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1

Waller, Ray A. A brief survey and comparison of common cause failure analysis. Los Alamos National Laboratory, 1985.

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2

Wierman, T. E. Common-cause failure database and analysis system: Event data collection, classification, and coding. U.S. Nuclear Regulatory Commission, Office of Nuclear Regulatory Research, 2007.

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3

McDonnell Douglas Astronautics Company--Houston Division. and United States. National Aeronautics and Space Administration., eds. Independent Orbiter assessment: Assessment of the electrical power generation/power reactant storage and distribution subsystem FMEA/CIL. McDonnell Douglas Astronautics Company, Houston Division, 1988.

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4

McDonnell Douglas Astronautics Company--Houston Division. and United States. National Aeronautics and Space Administration., eds. Independent Orbiter assessment: Analysis of the electrical power distribution and control/remote manipulator system subsystem. McDonnell Douglas Astronautics Company, Houston Division, 1987.

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5

Facility, Dryden Flight Research, ed. Monitoring techniques for the X-29A aircraft's high-speed rotating power takeoff shaft. National Aeronautics and Space Administration, Ames Research Center, Dryden Flight Research Facility, 1990.

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6

McDonnell Douglas Astronautics Company--Houston Division. and United States. National Aeronautics and Space Administration., eds. Independent Orbiter assessment: Analysis of the pyrotechnics subsystem. McDonnell Douglas Astronautics Company, Houston Division, 1988.

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7

Sun, Kai, Yunhe Hou, Wei Sun, and Junjian Qi. Power System Control Under Cascading Failures. John Wiley & Sons, Ltd, 2018. http://dx.doi.org/10.1002/9781119282075.

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8

IEEE Power Engineering Society. Power System Restoration Working Group. and IEEE Power System Engineering Committee. System Operations Subcommittee., eds. Power system restoration. The Institute of Electrical and Electronics Engineers, 1993.

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9

Caramia, Pierluigi. Power quality indices in liberalized markets. J. Wiley, 2009.

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10

R, Fragola Joseph, Frank Michael V, and United States. National Aeronautics and Space Administration., eds. Probabilistic risk assessment of the space shuttle: A study of the potential of losing the vehicle during nominal operation. The Corporation, 1995.

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11

Barkāns, Jēkabs. Protection against blackouts and self-restoration of power systems. RTU Pub. House, 2009.

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12

Energy, New York (State) Legislature Assembly Standing Committee on. Public hearing--the August 2003 power outage and reliability of New York's electric system. Associated Reporters Int'l., 2003.

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13

United States. Congress. Senate. Committee on Energy and Natural Resources. Electrical outages: Hearing before the Committee on Energy and Natural Resources, United States Senate, One Hundred Twelfth Congress, second session, to receive testimony on weather related electrical outages, April 26, 2012. U.S. G.P.O., 2012.

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14

United States. Congress. Senate. Committee on Energy and Natural Resources. Blackout in the Northeast and Midwest: Hearing before the Committee on Energy and Natural Resources, United States Senate, One Hundred Eighth Congress, second session, on the reliability of the nation's electricity grid, February 24, 2004. U.S. G.P.O., 2004.

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15

Ibrahim, Mohamed A. Disturbance analysis for power systems. Wiley, 2011.

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16

H, Eto Joseph, California Energy Commission. Public Interest Energy Research., and Lawrence Berkeley National Laboratory, eds. Demand response as a system reliability resource: 1st and 2nd year test report : PIER interim report. California Energy Commission, 2007.

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17

de, Hoo Sybren, Böttcher Harriët, Steetskamp Ineke, Wijk Ad van, and Rathenau Instituut, eds. Stroomloos: Kwetsbaarheid van de samenleving, gevolgen van verstoringen van de elektriciteitsvoorziening. Rathenau Instituut, 1994.

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18

Li, Wenyuan. Risk Assessment Of Power Systems. John Wiley & Sons, Ltd., 2005.

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19

Energy, New York (State) Legislature Assembly Standing Committee on. Public hearing on the power outage caused by the December 2008 ice storm. Associated Reporters Int'l., Inc., 2009.

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20

New York (State). Legislature. Assembly. Standing Committee on Energy. Public hearing on the August 2003 power outage. Associated Reporters Int'l., Inc., 2003.

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21

New York (State). Legislature. Assembly. Standing Committee on Energy. Public hearing on the August 2003 power outage. Regal Reporting Services, 2003.

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22

United States. Congress. House. Committee on Energy and Commerce. Blackout 2003: How did it happen and why? : hearing before the Committee on Energy and Commerce, House of Representatives, One Hundred Eighth Congress, first session, September 3 and September 4, 2003. U.S. G.P.O., 2004.

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23

United States. Congress. House. Committee on Science. Subcommittee on Energy. Keeping the lights on: Removing barriers to technology to prevent blackouts : hearing before the Subcommittee on Energy, Committee on Science, House of Representatives, One Hundred Eighth Congress, first session, September 25, 2003. U.S. G.P.O., 2004.

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24

New York (State). Dept. of Public Service. A report on the restoring of utility service following the storm of October 4, 1987. State of New York, Dept. of Public Service, 1988.

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25

Villaran, M. Aging assessment of instrument air systems in nuclear power plants. The Division, 1990.

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26

IEEE Power Engineering Society. Transformers Committee., American National Standards Institute, and Institute of Electrical and Electronics Engineers., eds. IEEE guide for reporting failure data for power transformers and shunt reactors on electric utility power systems. The Institute of Electrical and Electronics Engineers, 1988.

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27

Wheeler, T. A. Calculation of failure importance measures for basic events and plant systems in nuclear power plants. Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1987.

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28

Wheeler, T. A. Calculation of failure importance measures for basic events and plant systems in nuclear power plants. Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1987.

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29

Sharp, Courtney. The benefits of performing prognostics on a system before deployment: A study of power supplies associated with command, control, communications, computers, intelligence, surveillance and reconnaissance systems at Space and Naval Warfare Systems Center Pacific. National University, 2013.

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30

Li, Wenyuan. Risk assessment of power systems: Models, methods, and applications. IEEE Press, 2005.

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31

Meale, B. M. An aging failure survey of light water reactor safety systems and components. Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1988.

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32

Kanekawa, Nobuyasu. Dependability in electronic systems: Mitigation of hardware failures, soft errors, and electro-magnetic disturbances. Springer, 2011.

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33

Massachusetts. Office of Energy Resources. Report on the electricity supply situation of July 24, 1987: Causes, responses, and recommendations. Massachusetts Executive Office of Energy Resources, 1987.

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34

Taylor, K. J. The May storm blackout: Inquiry report. K.J. Taylor, 1994.

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35

Common-cause failure database and analysis system. Safety Programs Division, Office for Analysis and Evaluation of Operational Data, U.S. Nuclear Regulatory Commission, 1998.

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36

Anleitner, Michael A. The Power of Deduction: Failure Modes and Effects Analysis for Design. Quality Press, 2010.

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37

Newman, John Steven, and Stephen M. Wander. Harnessing the Power of Failure: Using Storytelling and Systems Engineering to Enhance Organizational Learning. Emerald Publishing Limited, 2021.

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38

Newman, John Steven, and Stephen M. Wander. Harnessing the Power of Failure: Using Storytelling and Systems Engineering to Enhance Organizational Learning. Emerald Publishing Limited, 2018.

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39

Newman, John Steven, and Stephen M. Wander. Harnessing the Power of Failure: Using Storytelling and Systems Engineering to Enhance Organizational Learning. Emerald Publishing Limited, 2018.

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40

Newman, John Steven, and Stephen M. Wander. Harnessing the Power of Failure: Using Storytelling and Systems Engineering to Enhance Organizational Learning. Emerald Publishing Limited, 2018.

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41

An autonomous fault detection, isolation, and recovery system for a 20-kHz electric power distribution test bed. National Aeronautics and Space Administration, 1991.

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42

Cumming, Jonathan A., and Michael Goldstein. Bayesian analysis and decisions in nuclear power plant maintenance. Edited by Anthony O'Hagan and Mike West. Oxford University Press, 2018. http://dx.doi.org/10.1093/oxfordhb/9780198703174.013.9.

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This article discusses the results of a study in Bayesian analysis and decision making in the maintenance and reliability of nuclear power plants. It demonstrates the use of Bayesian parametric and semiparametric methodology to analyse the failure times of components that belong to an auxiliary feedwater system in a nuclear power plant at the South Texas Project (STP) Electric Generation Station. The parametric models produce estimates of the hazard functions that are compared to the output from a mixture of Polya trees model. The statistical output is used as the most critical input in a stoc
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43

Sun, Wei, Kai Sun, Yunhe Hou, and Junjian Qi. Power System Control under Cascading Failures: Understanding, Mitigation, and System Restoration. Wiley & Sons, Incorporated, John, 2018.

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44

Sun, Wei, Kai Sun, Yunhe Hou, and Junjian Qi. Power System Control under Cascading Failures: Understanding, Mitigation, and System Restoration. Wiley & Sons, Incorporated, John, 2018.

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45

Sun, Wei, Kai Sun, Yunhe Hou, and Junjian Qi. Power System Control under Cascading Failures: Understanding, Mitigation, and System Restoration. Wiley & Sons, Limited, John, 2018.

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46

Sun, Wei, Kai Sun, Yunhe Hou, and Junjian Qi. Power System Control under Cascading Failures: Understanding, Mitigation, and System Restoration. Wiley & Sons, Incorporated, John, 2019.

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47

Martinez, Emmanuel. Electricity Reliability in the United States: Select Research. Nova Science Publishers, Incorporated, 2013.

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48

Shearman, David, and Joseph Wayne Smith. The Climate Change Challenge and the Failure of Democracy. Praeger, 2007. http://dx.doi.org/10.5040/9798400627453.

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This provocative book presents compelling evidence that the fundamental problem behind environmental destruction—and climate change in particular—is the operation of liberal democracy. Climate change threatens the future of civilization, but humanity is impotent in effecting solutions. Even in those nations with a commitment to reduce greenhouse emissions, they continue to rise. This failure mirrors those in many other spheres that deplete the fish of the sea, erode fertile land, destroy native forests, pollute rivers and streams, and utilize the world's natural resources beyond their replacem
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49

Caramia, Pierluigi, Guido Carpinelli, and Paola Verde. Power Quality Indices in Liberalized Markets. Wiley & Sons, Limited, John, 2009.

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50

Verde, Paolo, Pierluigi Caramia, Guido Carpinelli, and Paola Verde. Power Quality Indices in Liberalized Markets. Wiley & Sons, Incorporated, John, 2009.

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