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1

K, Sood Pradeep, e Lewis Research Center, eds. Study of the generator/motor operation of induction machines in a high frequency link space power system. Madison, Wis: University of Wisconsin, [Dept. of Electrical and Computer Engineering, 1987.

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2

Raza, Stephen Tsvangirayi. Compressed-air energy storage system analysis. Sudbury, Ont: Laurentian University, School of Engineering, 1993.

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3

C, Willhoite Bryon, Ommering Gert van e Lewis Research Center, eds. Energy storage and thermal control system design status. [Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1989.

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4

Sohn, C. W. Chilled water storage cooling system at Fort Jackson, SC. [Champaign, IL]: US Army Corps of Engineers, Construction Engineering Research Laboratories, 1998.

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5

Institution of Engineering and Technology e Knovel (Firm), eds. Energy storage for power systems. 2a ed. Stevenage, U.K: Institution of Engineering and Technology, 2011.

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6

E, Kascak Peter, e NASA Glenn Research Center, eds. DC bus regulation with a flywheel energy storage system. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2003.

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7

E, Kascak Peter, e NASA Glenn Research Center, eds. DC bus regulation with a flywheel energy storage system. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2002.

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8

Simpson, Andrew. Energy storage system considerations for grid-charged hybrid electric vehicles. Washington, D.C.]: U.S. Dept. of Energy, National Renewable Energy Laboratory, Office of Energy Efficiency & Renewable Energy, 2005.

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9

E, Coles-Hamilton Carolyn, Lacy Dovie E e United States. National Aeronautics and Space Administration., eds. Impact of thermal energy storage properties on solar dynamic space power conversion system mass. [Washington, DC]: National Aeronautics and Space Administration, 1987.

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10

Gevorgian, V. Ramping performance analysis of the Kahuku wind-energy battery storage system. Golden, CO: National Renewable Energy Laboratory, 2013.

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11

Bose, Bimal K. Advanced propulsion power distribution system for next generation electric/hybrid vehicle: Phase I, preliminary system studies : final report. Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1995.

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12

Min-Huei, Kim, e Lewis Research Center, eds. Advanced propulsion power distribution system for next generation electric/hybrid vehicle: Phase I, preliminary system studies : final report. Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1995.

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13

Xie, Rui, e Wei Wei. Distributionally Robust Optimization and its Applications in Power System Energy Storage Sizing. Singapore: Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-2566-3.

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14

Stocker, G. H. Solar heating using rocks: A solar heating system for homes using rock storage. Graham, Wash., U.S.A: Systems Co., 1993.

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15

J, Wolff Frederick, Dravid Narayan V e NASA Glenn Research Center, eds. Simulation of a flywheel electrical system for aerospace applications. Cleveland, Ohio: National Aeronautics and Space Administration, Glenn Research Center, 2000.

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16

Truong, Long V. Simulation of a flywheel electrical system for aerospace applications. Cleveland, Ohio: National Aeronautics and Space Administration, Glenn Research Center, 2000.

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17

H. A. L. van Dijk. High performance passive solar heating system with heatpipe energy transfer and latentheat storage modules. Luxembourg: Commission of the European Communities, 1985.

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18

Case, Alicia M. LEED certification with innovative sustainable energy storage at Gills Onions, LLC. [San Diego, California]: National University, 2013.

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19

Martin, R. E. Regenerative fuel cell energy storage system for a low earth orbit space station: Topical report. [South Windsor, Conn.]: United Technologies Corporation, Power Systems Division, 1988.

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20

Kikō, Nihon Bōeki Shinkō. Pilot project to install a system to promote energy savings in residential buildings that use district heating in the Northeast Region of China (Shenyang): Main report. Tokyo]: Japan External Trade Organization, 2009.

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21

P, Bauer David, e United States. National Aeronautics and Space Administration., eds. Hypervelocity launcher for aerothermodynamic experiments: Phase 2 : final report. [Washington, DC: National Aeronautics and Space Administration, 1995.

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22

National, Bechtel, New York State Energy Research and Development Authority., Power Authority of the State of New York. e Long Island Railroad Company, eds. Conceptual design of a battery energy storage system for the Long Island Rail Road: Final report. Albany, N.Y: NYSERDA, 1987.

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23

E, Kascak Peter, e NASA Glenn Research Center, eds. International Space Station bus regulation with NASA Glenn Research Center flywheel energy storage system development unit. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2001.

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24

E, Kascak Peter, e NASA Glenn Research Center, eds. International Space Station bus regulation with NASA Glenn Research Center flywheel energy storage system development unit. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2001.

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25

U.S. Dept. of Energy. The Department of Energy GOSIP Online Information System (DOE-GOIS) user reference manual. 2a ed. [Germantown, Md.?]: U.S. Dept. of Energy, Office of Information Resources Management, Policy, Plans, and Oversight, 1992.

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26

Office, General Accounting. The U.S. Nuclear Materials Information System can improve service to its user agencies: Report to the Secretary of Energy. Washington, D.C: The Office, 1985.

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27

Office, General Accounting. The U.S. Nuclear Materials Information System can improve service to its user agencies: Report to the Secretary of Energy. Washington, D.C: The Office, 1985.

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28

Office, General Accounting. The U.S. Nuclear Materials Information System can improve service to its user agencies: Report to the Secretary of Energy. Washington, D.C: The Office, 1985.

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29

Office, General Accounting. The U.S. Nuclear Materials Information System can improve service to its user agencies: Report to the Secretary of Energy. Washington, D.C: The Office, 1985.

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30

Office, General Accounting. The U.S. Nuclear Materials Information System can improve service to its user agencies: Report to the Secretary of Energy. Washington, D.C: The Office, 1985.

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31

Office, General Accounting. The U.S. Nuclear Materials Information System can improve service to its user agencies: Report to the Secretary of Energy. Washington, D.C: The Office, 1985.

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32

Energy, U. S. Dept of. The Department of Energy GOSIP Online Information System (DOE-GOIS) user reference manual. 2a ed. [Germantown, Md.?]: U.S. Dept. of Energy, Office of Information Resources Management, Policy, Plans, and Oversight, 1992.

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33

U.S. Dept. of Energy. The Department of Energy GOSIP Online Information System (DOE-GOIS) user reference manual. 2a ed. [Germantown, Md.?]: U.S. Dept. of Energy, Office of Information Resources Management, Policy, Plans, and Oversight, 1992.

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34

Fay, Edgar H. Lunar orbiting microwave beam power system. [Washington, D.C.]: NASA, 1990.

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35

United States. National Aeronautics and Space Administration., ed. Mars power system concept definition study: Task order no. 16. [Washington, DC: National Aeronautics and Space Administration, 1994.

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36

United States. Dept. of Energy. Assistant Secretary for Environment, Safety, and Health. A DOE-wide ES&H information management system: SPMS. Washington, D.C: U.S. Dept. of Energy, Office of Environment, Safety, and Health, 1989.

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37

Carlos, Balda Juan, Oliva Alejandro Raul, Electric Power Research Institute, Central and South West Corporation. e University of Arkansas (Fayetteville campus). Energy Conversion Laboratory., eds. The impact of dispersed generation upon the quality of electric power: The Solar Park in the Ft. Davis distribution system. Palo Alto, CA: Electric Power Research Institute, 1997.

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38

United States. Federal Energy Regulatory Commission., ed. Records and Information Management System (RIMS): Search and retrieval user guide : version 1.0. Washington, D.C: Federal Energy Regulatory Commission, 1997.

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39

Agency, International Atomic Energy, ed. INIS--database manual. Vienna: International Atomic Energy Agency, 1997.

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40

System, International Nuclear Information. INIS: Manual for online retrieval from the INIS database on the Internet. Vienna: International Atomic Energy Agency, 2000.

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41

Power System Energy Storage Technologies. Elsevier, 2018. http://dx.doi.org/10.1016/c2016-0-03680-x.

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42

Breeze, Paul. Power System Energy Storage Technologies. Elsevier Science & Technology Books, 2018.

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43

Breeze, Paul. Power System Energy Storage Technologies. Academic Press, 2018.

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44

Schmiegel, Armin. Energy Storage Systems: System Design and Storage Technologies. Oxford University Press, 2023.

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45

Energy storage System and artificial intelligence. ali zeinodiny, 2022.

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46

Handbook on Battery Energy Storage System. Asian Development Bank Institute, 2018.

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47

Salameh, Ziyad. Renewable Energy System Design. Elsevier Science & Technology Books, 2014.

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48

Renewable Energy System Design. Elsevier Science & Technology Books, 2014.

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49

Wang, Fei-Yue, Huaiguang Jiang e Eduard Muljadi. Modern Energy Storage: The Key to Energy System Transformation. Elsevier Science & Technology Books, 2024.

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50

Al, Robert Dixon Et. Novel Two-Phase Boost Converter Model with Inductive Energy Storage Technology. GRIN Verlag GmbH, 2014.

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