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-rw-r--r-- | paper/safety-reset-paper.tex | 128 | ||||
-rw-r--r-- | paper/safety-reset.bib | 2923 |
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diff --git a/paper/safety-reset-paper.tex b/paper/safety-reset-paper.tex index 3b7a93e..f4b24e6 100644 --- a/paper/safety-reset-paper.tex +++ b/paper/safety-reset-paper.tex @@ -335,8 +335,8 @@ investment. \section{Grid Frequency as a Communication Channel} We propose to approach the problem of broadcasting an emergency signal to all smart meters within a synchronous area by -using grid frequency as a communication channel. Despite the awesome complexity of large power grids, the physics -underlying their response to changes in load and generation is surprisingly simple. Individual machines (loads and +using grid frequency as a communication channel. Despite the technological complexity of the grid, the physics +underlying its response to changes in load and generation is surprisingly simple. Individual machines (loads and generators) can be approximated by a small number of differential equations and the entire grid can be modelled by aggregating these approximations into a large system of nonlinear differential equations. As a consequence, small signal changes in generation/consumption power balance cause an approximately proportional change in @@ -371,44 +371,61 @@ networks. \label{grid-freq-characterization} In utility SCADA systems, Phasor Measurement Units (PMUs, also called \emph{synchrophasors}) are used to precisely -measure grid frequency among other parameters. This task is much more complicated in practice than it might appear at -first glance since a PMU has to make extremely precise measurements, track fast changes in frequency and handle even -distorted input signals. Detail on the inner workings of commercial phasor measurement units is scarce but there is a -large amount of academic research on sophisticated phasor measurement +measure grid frequency among other parameters. This task is a complicated task since a PMU has to make fast and precise +measurements given a distorted input signal. Details on the inner workings of commercial phasor measurement units are +scarce but there is a large amount of academic research on measurement algorithms~\cite{narduzzi01,derviskadic01,belega01}. -Since we do not need reference standard-grade accuracy for our application we chose to start with a very basic algorithm -based on short-time fourier transform (STFT). Our system uses the universal frequency estimation approach of -experimental physicists Gasior and Gonzalez at CERN~\cite{gasior01}. The Gasior and Gonzalez algorithm~\cite{gasior01} -passes the windowed input signal through a DFT, then interpolates the signal's fundamental frequency by fitting a -wavelet such as a Gaussian to the largest peak in the DFT results. The bias parameter of this curve fit is an accurate -estimation of the signal's fundamental frequency. This algorithm is similar to the simpler interpolated DFT algorithm -used as a reference in much of the phasor measurement literature~\cite{borkowski01}. +In our application, we do not need the same level of precision. For the sake of simplicity, we use the universal +frequency estimation approach of Gasior and Gonzalez~\cite{gasior01}. In this algorithm, the windowed input signal is +processed using a Discrete Fourier Transform (DFT), then the signal's fundamental frequency is interpolated by fitting a +wavelet to the largest peak in the DFT result. The bias parameter of this curve fit is an accurate estimation of the +signal's fundamental frequency. This algorithm is similar to the simpler interpolated DFT algorithm referenced by phasor +measurement literature~\cite{borkowski01}. -To collect ground truth measurements for our analysis of grid frequency as a communication channel, we developed a device -to safely record real mains voltage waveforms. Our system consists of an \texttt{STM32F030F4P6} ARM Cortex M0 +To collect ground truth measurements for our analysis of grid frequency as a communication channel, we developed a +device to safely record mains voltage waveforms. Our system consists of an \texttt{STM32F030F4P6} ARM Cortex M0 microcontroller that records mains voltage using its internal 12-bit ADC and transmits measured values through a galvanically isolated USB/serial bridge to a host computer. We derive our system's sampling clock from a crystal oven to avoid frequency measurement noise due to thermal drift of a regular crystal: \SI{1}{ppm} of crystal drift would cause a -grid frequency error of $\SI{50}{\micro\hertz}$. We validated the performance of our crystal oven solution by -benchmarking it against a GPS 1pps reference. +grid frequency error of $\SI{50}{\micro\hertz}$. We compared our oven-stabilized clock against a GPS 1 pps reference and +found that over a time span of 20 minutes both stayed stable within 5 ppb of each other, which corresponds to the drift +specification of a typical crystal oven. -% FIXME measurement results, spectra +\begin{figure} + \centering + \includegraphics[width=0.8\textwidth]{../notebooks/fig_out/freq_meas_spectrum} + \caption{The spectrum of grid frequency variations measured over a two-day timespan. The raw spectrum is shown in + gray, and a smoothed spectrum is shown in red. The blue line is inversely proportional to frequency and illustrates + the $1/f$ nature of the spectrum. Distinctive peaks in the spectrum are marked with red crosses, and their locations + are given on the bottom of the diagram.} + \label{fig_freq_spec} +\end{figure} + +A number of effects can be seen in our measurement results in Figure~\ref{fig_freq_spec}. Across the frequency range, we +observe a broad $1/f$ noise. Above a period of $\SI{10}{\second}$, this $1/f$ noise dips to a flat noise floor. We +estimate that this low-noise region is caused by the self-regulating effect of loads. %FIXME citation +Above a $\SI{10}{\second}$ period, primary control is activated and thus the $1/f$ noise we observe is the result of the +interaction between primary control and consumer demand. On top of this $1/f$ behavior, the spectrum shows several sharp +peaks at time intervals with a ``round'' number such as $\SI{10}{\second}$, $\SI{60}{\second}$ or multiples of +$\SI{300}{\second}$. These peaks are due to loads turning on- or off depending on wall-clock time. Besides the narrow +peaks caused by this effect we can also observe two wider bumps at $\SI{6.3}{\second}$ and $\SI{3.9}{\second}$. These +bumps closely correlate with continental european synchonous area's oscillation modes at $\SI{0.15}{\hertz}$ (east-west) +and $\SI{0.25}{\hertz}$ (north-south)~\cite{grebe01}. +% FIXME measurement results \section{Grid Frequency Modulation} -Given the grid characteristics we measured using our custom waveform recorder and a model of our transmitter, we can -derive parameters for the modulation of our broadcast system. In its most basic form a transmitter for grid frequency -modulation would be a very large controllable load connected to the power grid at a suitable vantage point. A spool of -wire submerged in a body of cooling liquid such as a small lake along with a thyristor rectifier bank would likely -suffice to perform this function during occasional cybersecurity incidents. We can however decrease hardware and -maintenance investment even compared to this rather uncultivated solution by repurposing large industrial loads -as transmitters. Going through a list of energy-intensive industries in Europe~\cite{ec01}, we found that an aluminium -smelter would be a good candidate. In aluminium smelting, aluminium is electrolytically extracted from alumina solution. -High-voltage mains power is transformed, rectified and fed into about 100 series-connected electrolytic cells forming a -\emph{potline}. Inside these pots alumina is dissolved in molten cryolite electrolyte at about \SI{1000}{\degreeCelsius} -and electrolysis is performed using a current of tens or hundreds of Kiloampère. The resulting pure aluminium settles at -the bottom of the cell and is tapped off for further processing. +In its most basic form a transmitter for grid frequency modulation would be a very large controllable load located +centrally within the grid. A spool of wire submerged in a body of cooling liquid such as a small lake along with a +thyristor rectifier bank would likely suffice. We can however decrease hardware and maintenance investment even compared +to this rather uncultivated solution by repurposing large industrial loads as transmitters. Going through a list of +energy-intensive industries in Europe~\cite{ec01}, we found that an aluminium smelter would be a good candidate. In +aluminium smelting, aluminium is electrolytically extracted from alumina solution. High-voltage mains power is +transformed, rectified and fed into about 100 series-connected electrolytic cells forming a \emph{potline}. Inside these +pots alumina is dissolved in molten cryolite electrolyte at about \SI{1000}{\degreeCelsius} and electrolysis is +performed using a current of tens or hundreds of Kiloampère. The resulting pure aluminium settles at the bottom of the +cell and is tapped off for further processing. Aluminium smelters are operated around the clock, and due to the high financial stakes their behavior under power outages has been carefully characterized by the industry. Power outages of tens of minutes up to two hours reportedly do @@ -439,28 +456,35 @@ relation to the entire grid. \subsection{Parametrizing Modulation for GFM} -Modulating $\SI{25}{\mega\watt}$ of smelter power would yield a frequency shift of $\SI{1}{\milli\hertz}$. At an RMS -frequency noise of around $\SI{10}{\milli\hertz}$ in the band around $\SI{1}{\hertz}$, this results in challenging SNR. -% FIXME properly calculate frequency noise density, SNR -Under such conditions, the obvious choice for modulation are spread-spectrum techniques. Thus, we approached the setting -using Direct Sequence Spread Spectrum for its simple implementation and good overall performance. DSSS chip timing -should be as fast as the transmitter's physics allow to exploit the low-noise region between -$\SI{0.2}{\hertz}$ to $\SI{2.0}{\hertz}$ in the frequency noise spectrum while avoiding any of the grid's oscillation modes. Going -past $\approx\SI{2}{\hertz}$ would put strain on the receiver's frequency measurement subsystem~\cite{belega01}. Using a -spread-spectrum technique allows us to reduce the effect of interference by spurious tones. In addition, spreading our -signal's energy over frequency also reduces the likelihood that we cause the grid to oscillate along any of its modes. - -To test our proposed approach, we wrote a proof-of-concept modulator and demodulator in Python and tested this -proof-of-concept prototype with data captured from our grid frequency sensor. Our simulations covered a range of -parameters in modulation amplitude, DSSS sequence bit depth, chip duration and detection threshold. -Figure~\ref{fig_ser_nbits} shows symbol error rate (SER) as a function of modulation amplitude with Gold sequences of -several bit depths. As can be seen, realistic modulation amplitudes are in the range around $\SI{1}{\milli\hertz}$. In -the continental European synchronous area, this corresponds to a modulation power of approximately -$\SI{25}{\mega\watt}$. Figure~\ref{fig_ser_thf} shows SER against detection threshold relative to background noise. -Figure~\ref{fig_ser_chip} shows SER against chip duration for a given fixed symbol length. As expected from looking at -our measured grid frequency noise spectrum, performance is best for short chip durations and worsens for longer chip -durations since shorter chip durations move our signals' bandwidth into the lower-noise region from $\SI{0.2}{\hertz}$ -to $\SI{2}{\hertz}$. +Given the grid characteristics we measured using our custom waveform recorder and using a model of our transmitter, we +can derive parameters for the modulation of our broadcast system. Modulating $\SI{25}{\mega\watt}$ of smelter power +would yield a frequency shift of $\SI{1}{\milli\hertz}$. At an RMS frequency noise of around $\SI{10}{\milli\hertz}$ in +the band around $\SI{1}{\hertz}$, this results in challenging SNR. A second layer of modulation yielding some modulation +gain is necessary to achieve sufficient overall SNR. + +The grid's frequency noise has significant localized peaks that might interfere with this modulation. Further +complicating things are the oscillation modes. A GFM system must be designed to avoid exciting these modes. However, +since these modes are not static, a modulation method that is designed around a specific assumption of their location +would not be future proof. Given these concerns, the optimal second-level modulation technique for GFM is a +spread-spectrum technique. By spreading signal energy throughout a wide band, both the impact of local noise spikes is +minimized and the risk of mode excitation is reduced since spread-spectrum techniques minimize energy in any particular +sub-band. + +In this paper, we chose to perform simulations using Direct Sequence Spread Spectrum for its simple implementation and +good overall performance. DSSS chip timing should be as fast as the transmitter's physics allow to exploit the low-noise +region between $\SI{0.2}{\hertz}$ to $\SI{2.0}{\hertz}$ in Figure~\ref{fig_freq_spec}. Going past +$\approx\SI{2}{\hertz}$ would complicate frequency measurement at the receiver side. + +We simulated a proof-of-concept modulator and demodulator using data captured from our grid frequency sensor. Our +simulations covered a range of parameters in modulation amplitude, DSSS sequence bit depth, chip duration and detection +threshold. Figure~\ref{fig_ser_nbits} shows symbol error rate (SER) as a function of modulation amplitude with Gold +sequences of several bit depths. As can be seen, realistic modulation amplitudes are in the range around +$\SI{1}{\milli\hertz}$. In the continental European synchronous area, this corresponds to a modulation power of +approximately $\SI{25}{\mega\watt}$. Figure~\ref{fig_ser_thf} shows SER against detection threshold relative to +background noise. Figure~\ref{fig_ser_chip} shows SER against chip duration for a given fixed symbol length. As expected +from looking at our measured grid frequency noise spectrum, performance is best for short chip durations and worsens for +longer chip durations since shorter chip durations move our signals' bandwidth into the lower-noise region from +$\SI{0.2}{\hertz}$ to $\SI{2}{\hertz}$. %FIXME introduce term "chip" somewhere \begin{figure} diff --git a/paper/safety-reset.bib b/paper/safety-reset.bib index 18034b6..582bbef 100644 --- a/paper/safety-reset.bib +++ b/paper/safety-reset.bib @@ -1,288 +1,288 @@ -% Encoding: UTF-8
+@comment{x-kbibtex-encoding=utf-8} @article{pinto01, - author = {Pinto, Sandro and Santos, Nuno}, - title = {Demystifying Arm TrustZone: A Comprehensive Survey}, - year = {2019}, - issue_date = {February 2019}, - publisher = {Association for Computing Machinery}, - address = {New York, NY, USA}, - volume = {51}, - number = {6}, - issn = {0360-0300}, - url = {https://doi.org/10.1145/3291047}, - doi = {10.1145/3291047}, - journal = {ACM Comput. Surv.}, - month = jan, - articleno = {130}, - numpages = {36}, - keywords = {security, TEE, virtualization, Arm, TrustZone, survey} + address = {New York, NY, USA}, + articleno = {130}, + author = {Sandro Pinto and Nuno Santos}, + doi = {10.1145/3291047}, + issn = {0360-0300}, + issue_date = {February 2019}, + journal = {ACM Comput. Surv.}, + keywords = {security; TEE; virtualization; Arm; TrustZone; survey}, + month = jan, + number = {6}, + numpages = {36}, + publisher = {Association for Computing Machinery}, + title = {Demystifying Arm TrustZone: A Comprehensive Survey}, + url = {https://doi.org/10.1145/3291047}, + volume = {51}, + year = {2019} } @inproceedings{kanonov01, - title={Secure containers in Android: the Samsung KNOX case study}, - author={Kanonov, Uri and Wool, Avishai}, - booktitle={Proceedings of the 6th Workshop on Security and Privacy in Smartphones and Mobile Devices}, - pages={3--12}, - year={2016} + author = {Uri Kanonov and Avishai Wool}, + booktitle = {Proceedings of the 6th Workshop on Security and Privacy in Smartphones and Mobile Devices}, + pages = {3–12}, + title = {Secure containers in Android: the Samsung KNOX case study}, + year = {2016} } @inproceedings{rosenberg01, - title={Qsee trustzone kernel integer over flow vulnerability}, - author={Rosenberg, Dan}, - booktitle={Black Hat conference}, - year={2014} -} -
-@Online{bnetza1,
- author = {{German Government Bundesnetzagentur}},
- title = {Smart Meter},
- url = {https://web.archive.org/web/20190919100204/https://www.bundesnetzagentur.de/DE/Sachgebiete/ElektrizitaetundGas/Verbraucher/NetzanschlussUndMessung/SmartMetering/SmartMeter_node.html},
- urldate = {2019-09-19},
- publisher = {Bundesnetzagentur},
- year = {2019},
-}
-
-@Online{bmwi1,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik} and {Bundesministerium f{\"u}r Wirtschaft und Energie}},
- title = {Standardisierungsstrategie zur sektor{\"u}bergreifenden Digitalisierung nach dem Gesetz zur Digitalisierung der Energiewende},
- url = {https://web.archive.org/web/20190919100713/https://www.bmwi.de/Redaktion/DE/Downloads/S-T/standardisierungsstrategie.pdf},
- urldate = {2019-09-19},
- month = jan,
- publisher = {Bundesministerium f{\"u}r Wirtschaft und Energie},
- year = {2019},
-}
-
-@Unpublished{bsi-tr-03109,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {Technische Richtlinie BSI TR-03109},
- organization = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- url = {https://web.archive.org/web/20190919102010/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR03109.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=3},
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- booktitle = {Technische Richtlinie BSI TR-03109},
- month = nov,
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- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-1: Anforderungen an die Interoperabilit{\"a}t der Kommunikationseinheit eines intelligenten Messsystems},
- organization = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- url = {https://web.archive.org/web/20190919102217/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR03109-1.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=3},
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- url = {https://web.archive.org/web/20190919102651/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-6-Smart_Meter_Gateway_Administration.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=4},
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-@Unpublished{bsi-tr-03109-2,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-2: Smart Meter Gateway - Anforderungen an die Funktionalit{\"a}t und Interoperabilit{\"a}t des Sicherheitsmoduls},
- organization = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
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- urldate = {2019-09-19},
- booktitle = {Technische Richtlinie BSI TR-03109},
- month = dec,
- number = {v1.1},
- year = {2014},
-}
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-@Unpublished{bsi-tr-03109-3,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-3: Kryptographische Vorgaben f{\"u}r die Infrastruktur von intelligenten Messsystemen},
- organization = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- url = {https://web.archive.org/web/20190919102648/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-3_Kryptographische_Vorgaben.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=1},
- urldate = {2019-09-19},
- booktitle = {Technische Richtlinie BSI TR-03109},
- month = apr,
- year = {2014},
-}
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-@Unpublished{bsi-tr-03109-1-I,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-1 Anlage I: CMS-Datenformat f{\"u}r die Inhaltsdatenverschl{\"u}sselung und -signatur},
- organization = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- url = {https://web.archive.org/web/20190919104234/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1\_Anlage\_CMS.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2\_cid351?\_\_blob=publicationFile\&v=2},
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-@Unpublished{bsi-tr-03109-1-II,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
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- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919104234/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1\_Anlage\_CMS.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2\_cid351?\_\_blob=publicationFile\&v=2},
- urldate = {2019-09-19},
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-@Unpublished{bsi-tr-03109-1-IIIb,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-1 Anlage III: Feinspezifikation "Drahtlose LMN-Schnittstelle" Teil b: "OMS Technical Report Security"},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919110101/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1_Anlage_Feinspezifikation_Drahtlose_LMN-Schnittstelle-Teil2.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=2},
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-@Unpublished{bsi-tr-03109-1-IIIa,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-1 Anlage III: Feinspezifikation "Drahtlose LMN-Schnittstelle" Teil a: "OMS Specification Volume 2, Primary Communication"},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919110054/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1_Anlage_Feinspezifikation_Drahtlose_LMN-Schnittstelle.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=2},
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-@Unpublished{bsi-tr-03109-1-IVa,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-1 Anlage IV: Feinspezifikation "Drahtgebundene LMN-Schnittstelle" Teil a: "HDLC f{\"u}r LMN"},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919110101/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1_Anlage_Feinspezifikation_Drahtlose_LMN-Schnittstelle-Teil2.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=2},
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-@Unpublished{bsi-tr-03109-1-IVb,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-1 Anlage IV: Feinspezifikation "Drahtgebundene LMN-Schnittstelle" Teil b: "SML Smart Message Language"},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919110756/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1\_Anlage\_Feinspezifikation\_Drahtgebundene\_LMN-Schnittstelle\_Teilb.pdf jsessionid=BD197BE4CB44C76EE7945640B8703844.2\_cid351?\_\_blob=publicationFile\&v=2},
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-}
-
-@Unpublished{bsi-tr-03109-1-VI,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-1 Anlage VI: Betriebsprozesse},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919111203/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1_Anlage_Betriebsprozesse.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=1},
- urldate = {2019-09-19},
- booktitle = {Technische Richtlinie BSI TR-03109},
- edition = {v1.0},
- month = mar,
- year = {2013},
-}
-
-@Unpublished{bsi-tr-03109-1-VII,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-1 Anlage VII: Interoperabilit{\"a}tsmodell und Ger{\"a}teprofile f{\"u}r Smart-Meter- Gateways},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919111350/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1_Anlage_Interop-Modell-Geraeteprofile.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=2},
- urldate = {2019-09-19},
- booktitle = {Technische Richtlinie BSI TR-03109},
- edition = {v1.0},
- month = jan,
- year = {2019},
-}
-
-@Unpublished{bsi-tr-03109-2-a,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-2 Anhang A: Smart Meter Gateway Sicherheitsmodul Use Cases},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919111540/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-2-Sicherheitsmodul_Use_Cases.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=2},
- urldate = {2019-09-19},
- booktitle = {Technische Richtlinie BSI TR-03109},
- edition = {v1.1},
- month = dec,
- year = {2014},
-}
-
-@Unpublished{bsi-tr-03109-2-b,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-2 Anhang B: Smart Meter Mini-HSM Anforderungen an die Funktionalit{\"a}t und Interoperabilit{\"a}t des Sicherheitsmoduls},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919111832/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-2_Anhang_B_Smart_Meter_Mini_HSM.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=3},
- urldate = {2019-09-19},
- booktitle = {Technische Richtlinie BSI TR-03109},
- edition = {v1.0},
- month = jun,
- year = {2017},
-}
-
-@Unpublished{bsi-tr-03116-3,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03116-3: Intelligente Messsysteme},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919112052/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03116/BSI-TR-03116-3.pdf; jsessionid=CB56FC0D3137C5624CA697AB9E57671F.1_cid360?__blob=publicationFile&v=9},
- urldate = {2019-09-19},
- booktitle = {Technische Richtlinie BSI TR-03116 Kryptographische Vorgaben f{\"u}r Projekte der Bundesregierung},
- month = jan,
- year = {2019},
-}
-
-@Unpublished{bsi-tr-03109-ts-1,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-03109-TS-1: Testkonzept zu BSI TR-03109-1},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919112310/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-TS-1_Testkonzept.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=1},
- urldate = {2019-09-19},
- booktitle = {Technische Richtlinie BSI TR-03109},
- edition = {00.91},
- month = jan,
- year = {2015},
-}
-
-@Unpublished{bsi-tr-pruefstellen,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {TR-Pr{\"u}fstellen: Anforderungen an Antragsteller zur Anerkennung als Pr{\"u}fstelle im Bereich Technischer Richtlinien},
- organization = {Bundesamt f{\"u}r Sicherheit in der Informationstechnik},
- url = {https://web.archive.org/web/20190919112552/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Zertifizierung/TR-Pruefstellen.pdf; jsessionid=A6B4CB8AD2C038741C656276CE874B61.2_cid369?__blob=publicationFile&v=10},
- urldate = {2019-09-19},
- edition = {v1.5},
- month = jan,
- year = {2019},
-}
+ author = {Dan Rosenberg}, + booktitle = {Black Hat conference}, + title = {Qsee trustzone kernel integer over flow vulnerability}, + year = {2014} +} + +@online{bnetza1, + author = {{German Government Bundesnetzagentur}}, + publisher = {Bundesnetzagentur}, + title = {Smart Meter}, + url = {https://web.archive.org/web/20190919100204/https://www.bundesnetzagentur.de/DE/Sachgebiete/ElektrizitaetundGas/Verbraucher/NetzanschlussUndMessung/SmartMetering/SmartMeter_node.html}, + urldate = {2019-09-19}, + year = {2019} +} + +@online{bmwi1, + author = {{Bundesamt für Sicherheit in der Informationstechnik} and {Bundesministerium für Wirtschaft und Energie}}, + month = jan, + publisher = {Bundesministerium für Wirtschaft und Energie}, + title = {Standardisierungsstrategie zur sektorübergreifenden Digitalisierung nach dem Gesetz zur Digitalisierung der Energiewende}, + url = {https://web.archive.org/web/20190919100713/https://www.bmwi.de/Redaktion/DE/Downloads/S-T/standardisierungsstrategie.pdf}, + urldate = {2019-09-19}, + year = {2019} +} + +@unpublished{bsi-tr-03109, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + month = nov, + organization = {{Bundesamt für Sicherheit in der Informationstechnik}}, + title = {Technische Richtlinie BSI TR-03109}, + url = {https://web.archive.org/web/20190919102010/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR03109.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=3}, + urldate = {2019-09-19}, + year = {2015} +} + +@unpublished{bsi-tr-03109-1, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + month = jan, + number = {v1.0.1}, + organization = {{Bundesamt für Sicherheit in der Informationstechnik}}, + title = {TR-03109-1: Anforderungen an die Interoperabilität der Kommunikationseinheit eines intelligenten Messsystems}, + url = {https://web.archive.org/web/20190919102217/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR03109-1.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=3}, + urldate = {2019-09-19}, + year = {2019} +} + +@unpublished{bsi-tr-03109-6, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + month = nov, + number = {v1.0}, + organization = {{Bundesamt für Sicherheit in der Informationstechnik}}, + title = {TR-03109-6: Smart Meter Gateway Administration}, + url = {https://web.archive.org/web/20190919102651/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-6-Smart_Meter_Gateway_Administration.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=4}, + urldate = {2019-09-19}, + year = {2015} +} + +@unpublished{bsi-tr-03109-4, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + month = aug, + number = {v1.2.1}, + organization = {{Bundesamt für Sicherheit in der Informationstechnik}}, + title = {TR-03109-4: Public Key Infrastruktur für Smart Meter Gateways}, + url = {https://web.archive.org/web/20190919102649/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-4_PKI.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=3}, + urldate = {2019-09-19}, + year = {2017} +} + +@unpublished{bsi-tr-03109-2, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + month = dec, + number = {v1.1}, + organization = {{Bundesamt für Sicherheit in der Informationstechnik}}, + title = {TR-03109-2: Smart Meter Gateway - Anforderungen an die Funktionalität und Interoperabilität des Sicherheitsmoduls}, + url = {https://web.archive.org/web/20190919102644/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-2-Anforderungen_an_die_Funktionalitaet.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=3}, + urldate = {2019-09-19}, + year = {2014} +} + +@unpublished{bsi-tr-03109-3, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + month = apr, + organization = {{Bundesamt für Sicherheit in der Informationstechnik}}, + title = {TR-03109-3: Kryptographische Vorgaben für die Infrastruktur von intelligenten Messsystemen}, + url = {https://web.archive.org/web/20190919102648/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-3_Kryptographische_Vorgaben.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=1}, + urldate = {2019-09-19}, + year = {2014} +} + +@unpublished{bsi-tr-03109-1-I, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {v1.0}, + month = mar, + organization = {{Bundesamt für Sicherheit in der Informationstechnik}}, + title = {TR-03109-1 Anlage I: CMS-Datenformat für die Inhaltsdatenverschlüsselung und -signatur}, + url = {https://web.archive.org/web/20190919104234/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1\_Anlage\_CMS.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2\_cid351?\_\_blob=publicationFile\&v=2}, + urldate = {2019-09-19}, + year = {2013} +} + +@unpublished{bsi-tr-03109-1-II, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {v1.0}, + month = mar, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03109-1 Anlage II: COSEM/HTTP Webservices}, + url = {https://web.archive.org/web/20190919104234/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1\_Anlage\_CMS.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2\_cid351?\_\_blob=publicationFile\&v=2}, + urldate = {2019-09-19}, + year = {2012} +} + +@unpublished{bsi-tr-03109-1-IIIb, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {v1.0}, + month = mar, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03109-1 Anlage III: Feinspezifikation "Drahtlose LMN-Schnittstelle" Teil b: "OMS Technical Report Security"}, + url = {https://web.archive.org/web/20190919110101/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1_Anlage_Feinspezifikation_Drahtlose_LMN-Schnittstelle-Teil2.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=2}, + urldate = {2019-09-19}, + year = {2013} +} + +@unpublished{bsi-tr-03109-1-IIIa, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {v1.0}, + month = mar, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03109-1 Anlage III: Feinspezifikation "Drahtlose LMN-Schnittstelle" Teil a: "OMS Specification Volume 2, Primary Communication"}, + url = {https://web.archive.org/web/20190919110054/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1_Anlage_Feinspezifikation_Drahtlose_LMN-Schnittstelle.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=2}, + urldate = {2019-09-19}, + year = {2013} +} + +@unpublished{bsi-tr-03109-1-IVa, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {v1.0}, + month = mar, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03109-1 Anlage IV: Feinspezifikation "Drahtgebundene LMN-Schnittstelle" Teil a: "HDLC für LMN"}, + url = {https://web.archive.org/web/20190919110101/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1_Anlage_Feinspezifikation_Drahtlose_LMN-Schnittstelle-Teil2.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=2}, + urldate = {2019-09-19}, + year = {2013} +} + +@unpublished{bsi-tr-03109-1-IVb, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {v1.0}, + month = mar, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03109-1 Anlage IV: Feinspezifikation "Drahtgebundene LMN-Schnittstelle" Teil b: "SML Smart Message Language"}, + url = {https://web.archive.org/web/20190919110756/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1\_Anlage\_Feinspezifikation\_Drahtgebundene\_LMN-Schnittstelle\_Teilb.pdf jsessionid=BD197BE4CB44C76EE7945640B8703844.2\_cid351?\_\_blob=publicationFile\&v=2}, + urldate = {2019-09-19}, + year = {2013} +} + +@unpublished{bsi-tr-03109-1-VI, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {v1.0}, + month = mar, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03109-1 Anlage VI: Betriebsprozesse}, + url = {https://web.archive.org/web/20190919111203/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1_Anlage_Betriebsprozesse.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=1}, + urldate = {2019-09-19}, + year = {2013} +} + +@unpublished{bsi-tr-03109-1-VII, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {v1.0}, + month = jan, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03109-1 Anlage VII: Interoperabilitätsmodell und Geräteprofile für Smart-Meter- Gateways}, + url = {https://web.archive.org/web/20190919111350/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-1_Anlage_Interop-Modell-Geraeteprofile.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=2}, + urldate = {2019-09-19}, + year = {2019} +} + +@unpublished{bsi-tr-03109-2-a, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {v1.1}, + month = dec, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03109-2 Anhang A: Smart Meter Gateway Sicherheitsmodul Use Cases}, + url = {https://web.archive.org/web/20190919111540/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-2-Sicherheitsmodul_Use_Cases.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=2}, + urldate = {2019-09-19}, + year = {2014} +} + +@unpublished{bsi-tr-03109-2-b, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {v1.0}, + month = jun, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03109-2 Anhang B: Smart Meter Mini-HSM Anforderungen an die Funktionalität und Interoperabilität des Sicherheitsmoduls}, + url = {https://web.archive.org/web/20190919111832/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-2_Anhang_B_Smart_Meter_Mini_HSM.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=3}, + urldate = {2019-09-19}, + year = {2017} +} + +@unpublished{bsi-tr-03116-3, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03116 Kryptographische Vorgaben für Projekte der Bundesregierung}, + month = jan, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03116-3: Intelligente Messsysteme}, + url = {https://web.archive.org/web/20190919112052/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03116/BSI-TR-03116-3.pdf; jsessionid=CB56FC0D3137C5624CA697AB9E57671F.1_cid360?__blob=publicationFile&v=9}, + urldate = {2019-09-19}, + year = {2019} +} + +@unpublished{bsi-tr-03109-ts-1, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + booktitle = {Technische Richtlinie BSI TR-03109}, + edition = {00.91}, + month = jan, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-03109-TS-1: Testkonzept zu BSI TR-03109-1}, + url = {https://web.archive.org/web/20190919112310/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Publikationen/TechnischeRichtlinien/TR03109/TR-03109-TS-1_Testkonzept.pdf; jsessionid=BD197BE4CB44C76EE7945640B8703844.2_cid351?__blob=publicationFile&v=1}, + urldate = {2019-09-19}, + year = {2015} +} + +@unpublished{bsi-tr-pruefstellen, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + edition = {v1.5}, + month = jan, + organization = {Bundesamt für Sicherheit in der Informationstechnik}, + title = {TR-Prüfstellen: Anforderungen an Antragsteller zur Anerkennung als Prüfstelle im Bereich Technischer Richtlinien}, + url = {https://web.archive.org/web/20190919112552/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/Zertifizierung/TR-Pruefstellen.pdf; jsessionid=A6B4CB8AD2C038741C656276CE874B61.2_cid369?__blob=publicationFile&v=10}, + urldate = {2019-09-19}, + year = {2019} +} @article{mo01, author = {Yilin Mo and Tiffany Hyun-Jin Kim and Kenneth Brancik and Dona Dickinson and Heejo Lee and Adrian Perrig and Bruno Sinopoli}, journaltitle = {Proceedings of the IEEE}, month = jan, number = {1}, - pages = {195--209}, + pages = {195–209}, publisher = {IEEE}, title = {Cyber-Physical Security of a Smart Grid Infrastructure}, url = {http://ieeexplore.ieee.org.sci-hub.tw/abstract/document/6016202; https://ieeexplore.ieee.org/abstract/document/6016202; https://www.researchgate.net/profile/Yilin_Mo/publication/224257991_Cyber-Physical_Security_of_a_Smart_Grid_Infrastructure/links/004635395d2f66a584000000.pdf}, @@ -292,12 +292,12 @@ } @article{gungor01, - author = {Vehbi C. G{\"u}ng{\"o}r and Dilan Sahin and Taskin Kocak and Concettina Buccella and Carlo Cecati and Gerhard P. Hancke and Salih Erg{\"u}t}, + author = {Vehbi C. Güngör and Dilan Sahin and Taskin Kocak and Concettina Buccella and Carlo Cecati and Gerhard P. Hancke and Salih Ergüt}, journaltitle = {IEEE Transactions on Industrial Informatics}, month = nov, number = {4}, organization = {IEEE}, - pages = {529--539}, + pages = {529–539}, title = {Smart Grid Technologies: Communication Technologies and Standards}, url = {https://www.researchgate.net/profile/Salih_Ergut/publication/224257498_Smart_Grid_Technologies_Communication_Technologies_and_Standards/links/56ccb4e508ae85c8233bc062/Smart-Grid-Technologies-Communication-Technologies-and-Standards.pdf}, volume = {7}, @@ -318,7 +318,7 @@ author = {Yasin Kabalci}, doi = {10.1016/j.rser.2015.12.114}, journaltitle = {Renewable and Sustainable Energy Reviews}, - pages = {302--318}, + pages = {302–318}, publisher = {Elsevier}, title = {A survey on smart metering and smart grid communication}, url = {https://www.researchgate.net/profile/Yasin_Kabalci/publication/289504234_A_survey_on_smart_metering_and_smart_grid_communication/links/5a6105aaaca272a1581745c1/A-survey-on-smart-metering-and-smart-grid-communication.pdf}, @@ -329,7 +329,7 @@ @article{zhou01, author = {Bin Zhou and Wentao Li and Ka Wing Chan and Yijia Cao and Yonghong Kuang and Xi Liu and Xiong Wang}, journaltitle = {Renewable and Sustainable Energy Reviews}, - pages = {30--40}, + pages = {30–40}, publisher = {Elsevier}, title = {Smart home energy management systems: Concept, configurations, and scheduling strategies}, url = {http://www.sciencedirect.com.sci-hub.tw/science/article/abs/pii/S1364032116002823}, @@ -337,25 +337,25 @@ x-color = {#009966}, year = {2016} } -
-@Article{lloret01,
- author = {Jaime Lloret and Jesus Tomas and Alejandro Canovas and Lorena Parra},
- date = {2016},
- journaltitle = {IEEE Communications Magazine},
- title = {An Integrated IoT Architecture for Smart Metering},
- pages = {50--57},
- urldate = {2019-09-19},
- volume = {54},
- organization = {IEEE},
- x-color = {#7a783b},
- year = {2016},
-}
+ +@article{lloret01, + author = {Jaime Lloret and Jesus Tomas and Alejandro Canovas and Lorena Parra}, + date = {2016}, + journaltitle = {IEEE Communications Magazine}, + organization = {IEEE}, + pages = {50–57}, + title = {An Integrated IoT Architecture for Smart Metering}, + urldate = {2019-09-19}, + volume = {54}, + x-color = {#7a783b}, + year = {2016} +} @article{sharma01, author = {Konark Sharma and Lalit Mohan Saini}, doi = {10.1016/j.rser.2015.04.170}, journaltitle = {Renewable and Sustainable Energy Reviews}, - pages = {720--735}, + pages = {720–735}, publisher = {Elsevier}, title = {Performance analysis of smart metering for smart grid: An overview}, url = {http://www.sciencedirect.com.sci-hub.tw/science/article/abs/pii/S1364032115004402}, @@ -366,9 +366,9 @@ } @article{leiva01, - author = {Javier Leiva and Alfonso Palacios and Jos{\'e} A. Aguado}, + author = {Javier Leiva and Alfonso Palacios and José A. Aguado}, journaltitle = {Renewable and Sustainable Energy Reviews}, - pages = {227--233}, + pages = {227–233}, publisher = {Elsevier}, title = {Smart metering trends, implications and necessities: A policy review}, url = {http://kchbi.chtf.stuba.sk/upload_new/file/Miro/Proc%20problemy%20odovzdane%20zadania/Cyprichov%C3%A1/SmartMetering.pdf; http://dx.doi.org/10.1016/j.rser.2015.11.002}, @@ -379,7 +379,7 @@ } @article{lopez01, - author = {G. Lopez and J.I. Moreno and H. Amar\'{\i}s and F. Salazar}, + author = {G. Lopez and J.I. Moreno and H. Amarís and F. Salazar}, doi = {10.1016/j.epsr.2014.05.006}, journaltitle = {Electric Power Systems Research}, publisher = {Elsevier}, @@ -415,7 +415,7 @@ } @article{amin01, - author = {Saurabh Amin and Galina A. Schwartz and Alvaro A. C{\'a}rdenas and S. Shankar Sastry}, + author = {Saurabh Amin and Galina A. Schwartz and Alvaro A. Cárdenas and S. Shankar Sastry}, doi = {10.1109/MCS.2014.2364711}, journaltitle = {IEEE Control Systems Magazine}, month = feb, @@ -433,7 +433,7 @@ author = {Anzar Mahmood and Nadeem Javaid and Sohail Razzaq}, doi = {10.1016/j.rser.2014.08.036}, journaltitle = {Renewable and Sustainable Energy Reviews}, - pages = {248--260}, + pages = {248–260}, publisher = {Elsevier}, title = {A review of wireless communications for smart grid}, url = {http://www.sciencedirect.com.sci-hub.tw/science/article/abs/pii/S1364032114007126}, @@ -442,62 +442,62 @@ x-color = {#7a783b}, year = {2015} } -
-@Online{bsi01,
- author = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- title = {Marktanalyse zur Feststellung der technischen M{\"o}glichkeit zum Einbau intelligenter Messsysteme nach {\S} 30 MsbG},
- url = {https://web.archive.org/web/20190919124052/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/SmartMeter/Marktanalysen/Marktanalyse_nach_Para_30_MsbG.pdf?__blob=publicationFile&v=8},
- organization = {{Bundesamt f{\"u}r Sicherheit in der Informationstechnik}},
- urldate = {2019-09-19},
- edition = {v1.0},
- month = jan,
- x-color = {#009966},
- year = {2019},
-}
-
-@InProceedings{czechowski01,
- author = {R. {Czechowski} and A. M. {Kosek}},
- booktitle = {2016 Joint Workshop on Cyber- Physical Security and Resilience in Smart Grids (CPSR-SG)},
- date = {2016},
- title = {The most frequent energy theft techniques and hazards in present power energy consumption},
- doi = {10.1109/CPSRSG.2016.7684098},
- organization = {IEEE},
- pages = {1--7},
- url = {https://project-sparks.eu/wp-content/uploads/2016/04/czechowski-cpsr-sg-paper-four.pdf},
- keywords = {power consumption; power engineering computing; power system measurement; power system security; security of data; smart meters; energy theft techniques; power energy consumption; electric energy distribution; electricity theft detection; energy consumers; cyber security; smart metering; low voltage network; Energy consumption; Security; Energy measurement; Companies; Power systems; Wheels; Smart Grid; energy theft; cyber-physical security; digital data flow; energy hacking},
- month = {April},
- x-color = {#009966},
- year = {2016},
-}
-
-@Unpublished{st-db3636,
- author = {{ST Microelectronics}},
- title = {STSAFE-J100-BS Data brief},
- organization = {ST Microelectronics},
- subtitle = {Security module of a smart meter gateway as defined by the BSI},
- url = {https://www.st.com/resource/en/data_brief/stsafe-j100-bs.pdf},
- urldate = {2019-09-20},
- edition = {r1},
- month = {jun},
- x-color = {#009966},
- year = {2018},
-}
-
-@Online{dalheimer01,
- author = {Mathias Dalheimer},
- date = {2014},
- title = {Smart Meter-Einf{\"u}hrung Deutschland},
- url = {https://entropia.de/images/2/2c/GPN14-SmartMeterEinf%C3%BChrung.pdf},
- eventtitle = {Gulaschprogrammiernacht 2014},
-}
-
-@Online{heise01,
- author = {Leo Becker},
- editor = {{Heise Online}},
- date = {2019-09-27},
- title = {checkm8: Boot-Exploit soll neuere iPhones knacken},
- url = {https://www.heise.de/mac-and-i/meldung/checkm8-Boot-Exploit-soll-neuere-iPhones-knacken-4542075.html},
-}
+ +@online{bsi01, + author = {{Bundesamt für Sicherheit in der Informationstechnik}}, + edition = {v1.0}, + month = jan, + organization = {{Bundesamt für Sicherheit in der Informationstechnik}}, + title = {Marktanalyse zur Feststellung der technischen Möglichkeit zum Einbau intelligenter Messsysteme nach § 30 MsbG}, + url = {https://web.archive.org/web/20190919124052/https://www.bsi.bund.de/SharedDocs/Downloads/DE/BSI/SmartMeter/Marktanalysen/Marktanalyse_nach_Para_30_MsbG.pdf?__blob=publicationFile&v=8}, + urldate = {2019-09-19}, + x-color = {#009966}, + year = {2019} +} + +@inproceedings{czechowski01, + author = {R. {Czechowski} and A. M. {Kosek}}, + booktitle = {2016 Joint Workshop on Cyber- Physical Security and Resilience in Smart Grids (CPSR-SG)}, + date = {2016}, + doi = {10.1109/CPSRSG.2016.7684098}, + keywords = {power consumption; power engineering computing; power system measurement; power system security; security of data; smart meters; energy theft techniques; power energy consumption; electric energy distribution; electricity theft detection; energy consumers; cyber security; smart metering; low voltage network; Energy consumption; Security; Energy measurement; Companies; Power systems; Wheels; Smart Grid; energy theft; cyber-physical security; digital data flow; energy hacking}, + month = {April}, + organization = {IEEE}, + pages = {1–7}, + title = {The most frequent energy theft techniques and hazards in present power energy consumption}, + url = {https://project-sparks.eu/wp-content/uploads/2016/04/czechowski-cpsr-sg-paper-four.pdf}, + x-color = {#009966}, + year = {2016} +} + +@unpublished{st-db3636, + author = {{ST Microelectronics}}, + edition = {r1}, + month = {jun}, + organization = {ST Microelectronics}, + subtitle = {Security module of a smart meter gateway as defined by the BSI}, + title = {STSAFE-J100-BS Data brief}, + url = {https://www.st.com/resource/en/data_brief/stsafe-j100-bs.pdf}, + urldate = {2019-09-20}, + x-color = {#009966}, + year = {2018} +} + +@online{dalheimer01, + author = {Mathias Dalheimer}, + date = {2014}, + eventtitle = {Gulaschprogrammiernacht 2014}, + title = {Smart Meter-Einführung Deutschland}, + url = {https://entropia.de/images/2/2c/GPN14-SmartMeterEinf%C3%BChrung.pdf} +} + +@online{heise01, + author = {Leo Becker}, + date = {2019-09-27}, + editor = {{Heise Online}}, + title = {checkm8: Boot-Exploit soll neuere iPhones knacken}, + url = {https://www.heise.de/mac-and-i/meldung/checkm8-Boot-Exploit-soll-neuere-iPhones-knacken-4542075.html} +} @article{wu01, author = {Yongdong Wu and Zhuo Wei and Jian Weng and Xin Li and Robert H. Deng}, @@ -505,27 +505,27 @@ journaltitle = {IEEE Transactions on Smart Grid}, month = {Sep}, number = {5}, - pages = {4490--4502}, + pages = {4490–4502}, title = {Resonance Attacks on Load Frequency Control of Smart Grids}, volume = {9}, x-color = {#cc3300}, year = {2018} } -
-@Unpublished{entsoe01,
- author = {{ENTSO-E System Protection Dynamics and WG}},
- title = {Oscillation Event 03.12.2017},
- url = {https://docstore.entsoe.eu/Documents/SOC%20documents/Regional_Groups_Continental_Europe/OSCILLATION_REPORT_SPD.pdf},
- month = mar,
- year = {2018},
-}
+ +@unpublished{entsoe01, + author = {{ENTSO-E System Protection Dynamics and WG}}, + month = mar, + title = {Oscillation Event 03.12.2017}, + url = {https://docstore.entsoe.eu/Documents/SOC%20documents/Regional_Groups_Continental_Europe/OSCILLATION_REPORT_SPD.pdf}, + year = {2018} +} @article{leveson01, author = {Nancy G. Leveson and Clark S. Turner}, journaltitle = {IEEE Computer}, month = jul, number = {7}, - pages = {18--41}, + pages = {18–41}, title = {An Investigation of the Therac-25 Accidents}, url = {https://doi.org/10.1109/MC.1993.274940; https://web.archive.org/web/20041128024227/http://www.cs.umd.edu/class/spring2003/cmsc838p/Misc/therac.pdf}, volume = {26}, @@ -537,23 +537,23 @@ journaltitle = {ACM Transactions on Programming Languages and Systems}, month = jul, number = {3}, - pages = {382--401}, + pages = {382–401}, publisher = {ACM}, title = {The Byzantine Generals Problem}, url = {https://www.microsoft.com/en-us/research/publication/byzantine-generals-problem/?from=http%3A%2F%2Fresearch.microsoft.com%2Fen-us%2Fum%2Fpeople%2Flamport%2Fpubs%2Fbyz.pdf; https://doi.org/10.1145%2F357172.357176}, volume = {4}, year = {1982} } -
-@InBook{blaze01,
- author = {Matt Blaze and Joan Feigenbaum and John Ioannidis and Angelos D Keromytis},
- booktitle = {Secure Internet Programming},
- date = {1999},
- title = {The role of trust management in distributed systems security},
- pages = {185--210},
- publisher = {Springer},
- year = {1999},
-}
+ +@inbook{blaze01, + author = {Matt Blaze and Joan Feigenbaum and John Ioannidis and Angelos D Keromytis}, + booktitle = {Secure Internet Programming}, + date = {1999}, + pages = {185–210}, + publisher = {Springer}, + title = {The role of trust management in distributed systems security}, + year = {1999} +} @article{lee01, author = {Robert M. Lee and Michael J. Assante and Tim Conway}, @@ -565,7 +565,7 @@ @article{sun01, author = {Chih-Che Sun and Adam Hahn and Chen-Ching Liu}, journal = {International Journal of Electrical Power \& Energy Systems}, - pages = {45--56}, + pages = {45–56}, publisher = {Elsevier}, title = {Cyber security of a power grid: State-of-the-art}, volume = {99}, @@ -576,27 +576,27 @@ author = {Jixuan Zheng and David Wenzhong Gao and Li Lin}, booktitle = {2013 IEEE Green Technologies Conference (GreenTech)}, organization = {IEEE}, - pages = {57--64}, + pages = {57–64}, title = {Smart meters in smart grid: An overview}, year = {2013} } -
-@Unpublished{cenelec01,
- author = {{The CEN/CENELEC/ETSI Joint Working Group Standards Smart on for Grids}},
- title = {Final report of the CEN/CENELEC/ETSI Joint Working Group on Standards for Smart Grids},
- organization = {CEN/CENELEC/ETSI},
- month = may,
- year = {2011},
-}
-
-@Unpublished{pariente01,
- author = {Dillon Pariente and Emmanuel Ledinot},
- title = {Formal verification of industrial C code using Frama-C: a case study},
- journal = {Formal Verification of Object-Oriented Software},
- pages = {205-219},
- publisher = {KIT University of the State of Baden-Wuerttemberg and National Research Center of the Helmholtz Association},
- year = {2010},
-}
+ +@unpublished{cenelec01, + author = {{The CEN/CENELEC/ETSI Joint Working Group Standards Smart on for Grids}}, + month = may, + organization = {CEN/CENELEC/ETSI}, + title = {Final report of the CEN/CENELEC/ETSI Joint Working Group on Standards for Smart Grids}, + year = {2011} +} + +@unpublished{pariente01, + author = {Dillon Pariente and Emmanuel Ledinot}, + journal = {Formal Verification of Object-Oriented Software}, + pages = {205–219}, + publisher = {KIT University of the State of Baden-Wuerttemberg and National Research Center of the Helmholtz Association}, + title = {Formal verification of industrial C code using Frama-C: a case study}, + year = {2010} +} @inbook{rogers01, author = {Graham Rogers}, @@ -604,16 +604,16 @@ title = {Power System Oscillations}, year = {2000} } -
-@InProceedings{grebe01,
- author = {E. Grebe and J. Kabouris and S. L{\'o}pez Barba and W. Sattinger and W. Winter},
- title = {Low Frequency Oscillations in the Interconnected System of Continental Europe},
- doi = {10.1109/PES.2010.5589932 {\textperiodcentered}},
- publisher = {IEEE},
- journaltitle = {IEEE PES General Meeting},
- month = aug,
- year = {2010},
-}
+ +@inproceedings{grebe01, + author = {E. Grebe and J. Kabouris and S. López Barba and W. Sattinger and W. Winter}, + doi = {10.1109/PES.2010.5589932}, + journaltitle = {IEEE PES General Meeting}, + month = aug, + publisher = {IEEE}, + title = {Low Frequency Oscillations in the Interconnected System of Continental Europe}, + year = {2010} +} @article{mcdaniel01, author = {McDaniel Patrick and McLaughlin Stephen}, @@ -623,24 +623,24 @@ title = {Security and Privacy Challenges in the Smart Grid}, year = {2009} } -
-@Article{schafer01,
- author = {Benjamin Sch{\"a}fer and Moritz Matthiae and Marc Timme and Dirk Witthaut},
- journaltitle = {New Journal of Physics},
- title = {Decentral Smart Grid Control},
- doi = {doi:10.1088/1367-2630/17/1/015002},
- volume = {17},
- month = jan,
- publisher = {IOP/DPG},
- year = {2015},
-}
+ +@article{schafer01, + author = {Benjamin Schäfer and Moritz Matthiae and Marc Timme and Dirk Witthaut}, + doi = {10.1088/1367-2630/17/1/015002}, + journaltitle = {New Journal of Physics}, + month = jan, + publisher = {IOP/DPG}, + title = {Decentral Smart Grid Control}, + volume = {17}, + year = {2015} +} @article{kosut01, author = {Oliver Kosut and Liyan Jia and Robert J. Thomas and Lang Tong}, journaltitle = {IEEE Transactions on Smart Grid}, month = nov, number = {4}, - pages = {645-658}, + pages = {645–658}, publisher = {IEEE}, title = {Malicious Data Attacks on the Smart Grid}, volume = {2}, @@ -668,16 +668,16 @@ volume = {31}, year = {2013} } -
-@InProceedings{fraunholz01,
- author = {Daniel Fraunholz and Simon {Duque Anton} and Hans Dieter Schotten},
- title = {Introducing GAMfIS: A Generic Attacker Model for Information Security},
- publisher = {IEEE},
- url = {https://doi.org/10.23919/SOFTCOM.2017.8115550},
- journaltitle = {2017 25th International Conference on Software, Telecommunications and Computer Networks (SoftCOM)},
- month = nov,
- year = {2017},
-}
+ +@inproceedings{fraunholz01, + author = {Daniel Fraunholz and Simon {Duque Anton} and Hans Dieter Schotten}, + journaltitle = {2017 25th International Conference on Software, Telecommunications and Computer Networks (SoftCOM)}, + month = nov, + publisher = {IEEE}, + title = {Introducing GAMfIS: A Generic Attacker Model for Information Security}, + url = {https://doi.org/10.23919/SOFTCOM.2017.8115550}, + year = {2017} +} @online{nytimes01, author = {Andrew E. Kramer}, @@ -689,7 +689,7 @@ } @article{perez01, - author = {Noelia Uribe-P{\'e}rez and Luis Hern{\'a}ndez and David de la Vega and Itziar Angulo}, + author = {Noelia Uribe-Pérez and Luis Hernández and David de la Vega and Itziar Angulo}, comment = {Questionable publisher but seems good-quality, well-researched. Maybe not published elsewhere since it's just an industry/legislative review article?}, doi = {10.3390/app6030068}, journaltitle = {Applied Sciences}, @@ -708,1044 +708,1051 @@ comment = {has lots of self-citations by urtasun}, journaltitle = {Renewable Energy}, month = jan, - pages = {325--336}, + pages = {325–336}, publisher = {Elsevier}, title = {Energy management strategy for a battery-diesel stand-alone system with distributed PV generation based on grid frequency modulation}, url = {http://dx.doi.org/10.1016/j.renene.2013.12.020}, volume = {66}, year = {2014} } -
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- date = {2018},
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Rodden and Joel E. Fischer and Nadia Pantidi and Khaled Bachour and Stuart Moran}, + booktitle = {Proceedings of the SIGCHI Conference on Human Factors in Computing Systems - CHI '13}, + date = {2013}, + doi = {10.1145/2470654}, + title = {At Home with Agents: Exploring Attitudes Towards Future Smart Energy Infrastructures}, + year = {2013} +} + +@inproceedings{pierce01, + author = {James Pierce and Eric Paulos}, + booktitle = {CHI 2012}, + date = {2012}, + doi = {10.1145/2207676.2207771}, + subtitle = {interaction, energy, and emerging energy systems}, + title = {Beyond Energy Monitors: Interaction, Energy, and Emerging Energy Systems}, + year = {2012} +} + +@article{lupton01, + author = {Deborah Lupton}, + date = {2016}, + doi = {10.1080/03085147.2016.1143726}, + issn = {0308-5147}, + journaltitle = {Economy and Society}, + pages = {101–122}, + title = {The diverse domains of quantified selves: self-tracking modes and dataveillance}, + volume = {45}, + year = {2016} +} + +@inproceedings{costanza01, + author = {Enrico Costanza and Joel E. Fischer and James A. Colley and Tom Rodden and Sarvapali D. Ramchurn and Nicholas R. Jennings}, + booktitle = {CHI 2014, One of a CHInd}, + date = {2014}, + doi = {10.1145/2556288.2557167}, + subtitle = {a field trial of a future smart energy system in the home}, + title = {Doing the Laundry with Agents: a Field Trial of a Future SmartEnergy System in the Home}, + year = {2014} +} + +@article{fell01, + author = {Michael J. Fell and David Shipworth and Gesche M. Huebner and Clifford A. Elwell}, + date = {2015}, + doi = {10.1016/j.erss.2015.08.023}, + issn = {2214-6296}, + journaltitle = {Energy Research and Social Science}, + pages = {72–84}, + title = {Public acceptability of domestic demand-side response in Great Britain: The role of automation and direct load control}, + volume = {9}, + year = {2015} +} + +@online{silabs01, + author = {Vivek Mohan and {Silicon Labs}}, + date = {2015}, + title = {An Introduction to Wireless M-Bus}, + url = {http://pages.silabs.com/rs/634-SLU-379/images/introduction-to-wireless-mbus.pdf} +} + +@article{belega01, + author = {Daniel Belega and Dario Petri}, + date = {2013}, + doi = {10.1109/tim.2012.2236777}, + issn = {0018-9456}, + issue = {5}, + journaltitle = {IEEE Transactions on Instrumentation and Measurement}, + pages = {942–953}, + title = {Accuracy Analysis of the Multicycle Synchrophasor Estimator Provided by the Interpolated DFT Algorithm}, + volume = {62}, + year = {2013} +} + +@article{borkowski01, + author = {Jozef Borkowski and Dariusz Kania and Janusz Mroczka}, + date = {2014}, + doi = {10.1109/tie.2014.2316225}, + issn = {0278-0046}, + issue = {12}, + journaltitle = {IEEE Transactions on Industrial Electronics}, + pages = {7026–7034}, + title = {Interpolated-DFT-Based Fast and Accurate Frequency Estimation for the Control of Power}, + volume = {61}, + year = {2014} +} + +@unpublished{semerow01, + author = {Anatoli Semerow and Sebastian Hohn and Matthias Luther and Walter Sattinger and Hans Abildgaard and Agustin Diaz Garcia and Giorgio Giannuzzi}, + date = {2015}, + doi = {10.1109/ptc.2015.7232578}, + institution = {{University of Erlangen-Nuremberg} and ENTSO-E}, + title = {Dynamic Study Model for the interconnected power system of Continental Europe in different simulation tools}, + year = {2015} +} + +@online{entsoe05, + author = {ENTSO-E}, + date = {2019}, + title = {ENTSO-E Initial Dynamic Model of Continental Europe}, + url = {https://www.entsoe.eu/publications/system-operations-reports/#entso-e-initial-dynamic-model-of-continental-europe}, + urldate = {2020-05-14} +} + +@inbook{brown01, + author = {Marilyn A. Brown and Shan Zhou}, + booktitle = {Advances in Energy Systems: The Large-scale Renewable Energy Integration Challenge}, + comment = {Extremely obvious industry pandering.}, + date = {2019}, + doi = {10.1002/9781119508311}, + edition = {First Ed.}, + publisher = {Wiley}, + subtitle = {The Large-scale Renewable Energy Integration Challenge}, + title = {Smart‐Grid Policies: An International Review}, + year = {2019} +} + +@online{kamstrup01-2, + author = {{Kamstrup A/S}}, + date = {2018}, + title = {STS prepayment meter}, + url = {https://www.kamstrup.com/en-en/electricity-solutions/smart-electricity-meters/sts-prepayment-meter}, + urldate = {2020-05-18} +} + +@book{sato01, + author = {Takuro Sato and Daniel M. Kammen and Bin Duan and Martin Macuha and Zhenyu Zhou and Jun Wu and Muhammad Tariq and Solomon Abebe Asfaw}, + date = {2015}, + publisher = {Wiley}, + subtitle = {Specifications, Requirements and Technologies}, + title = {Smart Grid Standards} +} + +@unpublished{ec03, + date = {2014}, + institution = {European Commission}, + title = {Single Market Progress Report: Country Profiles – Italy}, + type = {resreport}, + url = {https://ec.europa.eu/energy/sites/ener/files/documents/2014_countryreports_italy.pdf}, + urldate = {2020-05-18} +} + +@unpublished{usitc01, + author = {Lisa Alejandro and Caitlin Blair and Laura Bloodgood and Mahnaz Khan and Martha Lawless and Daniel Meehan and Patrick Schneider and Karl Tsuji}, + date = {2014}, + institution = {U.S. International Trade Commission}, + subtitle = {Government Policies Driving Strong Growth}, + title = {Global Market for Smart Electricity Meters}, + type = {resreport}, + url = {https://www.usitc.gov/publications/332/id-037smart_meters_final.pdf}, + urldate = {2020-05-18} +} + +@unpublished{toshiba01, + author = {Mitsuhide Ishima and Kiyoyuki Terai and Yoshihiro Ogita}, + date = {2018}, + institution = {Toshiba Energy Systems and Solutions}, + issue = {4}, + journaltitle = {Toshiba Review}, + pages = {46–50}, + title = {Construction and Operation of Communication System for Smart Meter System of TEPCO Power Grid, Inc.}, + url = {https://www.toshiba.co.jp/tech/review/2018/04/73_04pdf/f02.pdf}, + urldate = {2020-05-18}, + volume = {73} +} + +@unpublished{ukgov01, + author = {{UK Department for Business, Energy and Industrial Strategy}}, + date = {2018}, + institution = {UK Department for Business, Energy and Industrial Strategy}, + title = {Smart Metering Implementation Programme Progress Report for 2018}, + url = {https://www.gov.uk/government/publications/smart-metering-implementation-programme-progress-report-2018}, + urldate = {2020-05-18} +} + +@unpublished{ukgov02, + author = {{UK Department of Energy and Climate Change}}, + date = {2014}, + title = {Smart Metering Implementation Programme: Smart Metering Equipment Technical Specifications}, + url = {https://assets.publishing.service.gov.uk/government/uploads/system/uploads/attachment_data/file/381535/SMIP_E2E_SMETS2.pdf}, + urldate = {2020-05-18}, + version = {1.58} +} + +@unpublished{ukgov03, + author = {{UK Department for Business, Energy and Industrial Strategy}}, + date = {2016}, + institution = {UK Department for Business, Energy and Industrial Strategy}, + title = {Smart Meter Rollout Cost-Benefit Analysis Part I}, + url = {https://ec.europa.eu/growth/tools-databases/tris/cs/index.cfm/search/?trisaction=search.detail&year=2017&num=350&iLang=EN}, + urldate = {2020-05-18} +} + +@thesis{mahlknecht01, + author = {Peter Mahlknecht}, + date = {2014}, + institution = {Technische Universität Wien}, + title = {Diplomarbeit Sicherheitsmodul für ein Smart Metering Gateway}, + url = {https://publik.tuwien.ac.at/files/PubDat_233035.pdf}, + urldate = {2020-05-18} +} + +@online{delaw01, + date = {2019-03-14}, + title = {Stromgrundversorgungsverordnung StromGVV § 19 Unterbrechung der Versorgung}, + url = {http://www.gesetze-im-internet.de/stromgvv/__19.html}, + urldate = {2020-05-18} +} + +@article{cuijpers01, + author = {Colette Cuijpers and Bert-Jaap Koops}, + date = {2012}, + doi = {10.1007/978-94-007-5170-5_12}, + journalsubtitle = {Coming of age}, + journaltitle = {European data protection}, + pages = {269–293}, + title = {Smart metering and privacy in Europe: lessons from the Dutch case} +} + +@online{ec04, + date = {2012}, + editor = {{The European Commission}}, + title = {The Energy Efficiency Directive}, + url = {https://ec.europa.eu/energy/topics/energy-efficiency/targets-directive-and-rules/energy-efficiency-directive_en}, + urldate = {2020-05-18} +} + +@article{aubel01, + author = {Pol Van Aubel and Erik Poll}, + date = {2019}, + doi = {10.1016/j.ijepes.2019.01.001}, + issn = {0142-0615}, + journaltitle = {International Journal of Electrical Power and Energy Systems}, + pages = {719–725}, + title = {Smart metering in the Netherlands: what, how and why}, + volume = {109} +} + +@unpublished{dsmrp3, + date = {2014}, + institution = {Netbeheer Nederland WG DSMR}, + title = {Dutch Smart Meter Requirements P3 Companion Standard}, + url = {https://www.netbeheernederland.nl/_upload/Files/Slimme_meter_15_1f3c5c9b2c.pdf}, + urldate = {2020-05-18}, + version = {4.0.7} +} + +@unpublished{dsmrp1, + date = {2016}, + institution = {Netbeheer Nederland WG DSMR}, + title = {Dutch Smart Meter Requirements P1 Companion Standard}, + url = {https://smarty.creos.net/wp-content/uploads/DutchSmartMeterRequirements.pdf}, + urldate = {2020-05-18}, + version = {5.0.2} +} + +@inproceedings{anderson01, + author = {Ross Anderson and Shailendra Fuloria}, + booktitle = {2010 First IEEE International Conference on Smart Grid Communications}, + date = {2010}, + doi = {10.1109/SMARTGRID.2010.5622026}, + location = {Gaithersburg, MD}, + pages = {96–101}, + title = {Who controls the off switch?}, + url = {https://www.cl.cam.ac.uk/~rja14/Papers/meters-offswitch.pdf}, + urldate = {2020-05-18} +} + +@book{abdallah01, + address = {Cham}, + author = {Asmaa Abdallah}, + editor = {Xuemin Shen}, + isbn = {9783319936772}, + pagetotal = {1 Online-Ressource (XIV, 126 p. 30 illus., 23 illus. in color)}, + ppn_gvk = {1028034970}, + publisher = {Springer International Publishing}, + series = {SpringerBriefs in Electrical and Computer Engineering}, + title = {Security and Privacy in Smart Grid}, + url = {http://dx.doi.org/10.1007/978-3-319-93677-2}, + year = {2018} +} + +@inbook{kaplan01, + author = {Abraham Kaplan}, + booktitle = {The Conduct of Inquiry: Methodology for Behavioral Science}, + date = {1964}, + isbn = {9781412836296}, + location = {San Francisco}, + pages = {28}, + publisher = {Chandler Publishing Co.}, + title = {The Law of the 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date = {2014}, + institution = {Department of Mathematics and Computer Science, Eindhoven University of Technology}, + title = {DLMS / COSEM Protocol Security Evaluation}, + type = {mathesis}, + url = {https://pure.tue.nl/ws/files/46962657/773263-1.pdf}, + urldate = {2020-05-20} +} + +@book{salus01, + author = {Peter H. 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Frincke}, + date = {2010}, + doi = {10.1109/msp.2010.49}, + issn = {1540-7993}, + journaltitle = {IEEE Security and Privacy Magazine}, + pages = {81–85}, + title = {Smart-grid security issues}, + volume = {8}, + year = {2010} +} + +@online{heise02, + author = {Stefan Krempl}, + date = {2019-12-29}, + editor = {{Heise Online}}, + publisher = {{Heise Online}}, + title = {36C3: Schwere Sicherheitslücken in Kraftwerken}, + url = {https://www.heise.de/newsticker/meldung/36C3-Schwere-Sicherheitsluecken-in-Kraftwerken-4624529.html}, + urldate = {2020-05-22} +} + +@article{kerckhoff01, + author = {Auguste Kerckhoff}, + date = {1883}, + journaltitle = {Journal des sciences militaires}, + pages = {5–38}, + title = {La cryptographie militaire}, + volume = {IX} +} + +@online{kerckhoff02, + author = {Fabien Petitcolas}, + date = {2020}, + language = {English}, + title = {Kerckhoffs' principles from “La cryptographie militaire”}, + url = {https://www.petitcolas.net/kerckhoffs/index.html}, + urldate = {2020-05-25} +} + +@book{mackay01, + address = {Cambridge [u.a.]}, + author = {David J. C. MacKay}, + date = {2005}, + edition = {Repr. with corr.}, + isbn = {0521642981}, + note = {Literaturverz. S. 613 - 619}, + pagetotal = {XII, 628}, + ppn_gvk = {50543234X}, + publisher = {Univ. Press}, + title = {Information theory, inference, and learning algorithms}, + year = {2005} +} + +@book{anderson02, + author = {Ross J. Anderson}, + date = {2020}, + edition = {3rd}, + note = {Preview of upcoming edition}, + publisher = {Wiley}, + subtitle = {A guide to building dependable distributed systems}, + title = {Security engineering}, + url = {https://www.cl.cam.ac.uk/~rja14/book.html}, + urldate = {2020-05-25} +} + +@article{anderson03, + author = {R. J. {Anderson} and S. J. {Bezuidenhoudt}}, + doi = {10.1109/32.502222}, + journal = {IEEE Transactions on Software Engineering}, + number = {5}, + pages = {294–301}, + title = {On the reliability of electronic payment systems}, + volume = {22}, + year = {1996} +} + +@unpublished{ukgov04, + author = {{UK Department for Business Energy and Industrial Strategy}}, + date = {2019}, + title = {Smart Meter Statistics Quarterly Report to end March 2019}, + url = {https://assets.publishing.service.gov.uk/government/uploads/system/uploads/attachment_data/file/804767/2019_Q1_Smart_Meters_Report.pdf}, + urldate = {2020-05-26} +} + +@unpublished{bnetza02, + author = {{German Government Bundesnetzagentur}}, + date = {2018}, + title = {Monitoring Report 2018}, + url = {https://www.bundesnetzagentur.de/SharedDocs/Downloads/EN/BNetzA/PressSection/ReportsPublications/2019/MonitoringReport2019.pdf}, + urldate = {2020-05-26} +} + +@article{borkar01, + author = {Shekhar Borkar}, + date = {2005}, + journal = {Ieee Micro}, + journaltitle = {IEEE Micro}, + number = {6}, + pages = {10–16}, + publisher = {IEEE}, + title = {Designing reliable systems from unreliable components: the challenges of transistor variability and degradation}, + volume = {25}, + year = {2005} +} + +@article{hahn01, + author = {Adam Hahn and Manimaran Govindarasu}, + date = {2011}, + doi = {10.1109/TSG.2011.2163829}, + journaltitle = {IEEE Transactions on Smart Grid}, + pages = {835–843}, + title = {Cyber Attack Exposure Evaluation Framework for the Smart Grid} +} + +@inproceedings{temple01, + author = {William G. 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