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1

Chakrabortty, Aranya. Control and optimization methods for electric smart grids. Edited by Ilic Marija D. 1951-. New York: Springer, 2012.

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2

Soong, Kim Che, Melikov Agassi, and SpringerLink (Online service), eds. Performance Analysis and Optimization of Multi-Traffic on Communication Networks. Berlin, Heidelberg: Springer-Verlag Berlin Heidelberg, 2010.

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3

Shahnia, Farhad, Ali Arefi, and Gerard Ledwich, eds. Electric Distribution Network Planning. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-7056-3.

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4

Arefi, Ali, Farhad Shahnia, and Gerard Ledwich, eds. Electric Distribution Network Management and Control. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-7001-3.

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5

1928-, Holmes E. J., and Institution of Electrical Engineers, eds. Electricity distribution network design. 2nd ed. London: Peter Peregrinus Ltd., on behalf of the Institution of Electrical Engineers, 2003.

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6

Lakervi, E. Electricity distribution network design. London: P. Peregrinus on behalf of the Institution of Electrical Engineers, 1989.

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7

Resener, Mariana, Steffen Rebennack, Panos M. Pardalos, and Sérgio Haffner, eds. Handbook of Optimization in Electric Power Distribution Systems. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-36115-0.

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8

Lauronen, Jari. Spare part management of an electricity distribution network. Lappeenranta, Finland: Lappeenranta University of Technology, 1998.

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9

Transforming the grid: Electricity system governance and network integration of distributed generation. Baden-Baden, Germany: Nomos, 2012.

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10

Myllyntaus, Timo. Phases of a network: From a breakthrough to a national system. [Helsinki]: Fingrid Oyj, 1999.

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11

Circuit analysis fundamentals. Chicago, IL: Agile Press, 2005.

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12

Greece) IREP Symposium (2013 Rethymnon. 2013 IREP Symposium Bulk Power System Dynamics and Control - IX Optimization, Security and Control of the Emerging Power Grid supplement (IREP supplement 2013): Rethymnon, Crete, Greece, 25-30 August 2013. Piscataway, NJ: IEEE, 2013.

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13

Monticelli, A. State estimation in electric power systems: A generalized approach. Boston: Kluwer Academic Publishers, 1999.

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14

Srikant, R. The mathematics of Internet congestion control. Boston: Birkhäuser, 2004.

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15

Srikant, R. The Mathematics of Internet Congestion Control. Boston, MA: Birkhäuser Boston, 2004.

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16

Kruimer, Hannah. The non-discrimination obligation of energy network operators: European rules and regulatory practice. Cambridge, United Kingdom: Intersentia, 2014.

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17

ZnO bao mo zhi bei ji qi guang, dian xing neng yan jiu. Shanghai Shi: Shanghai da xue chu ban she, 2010.

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18

Chakrabortty, Aranya, and Marija D. Ilić. Control and Optimization Methods for Electric Smart Grids. Springer, 2011.

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19

Chakrabortty, Aranya, and Marija D. Ilić. Control and Optimization Methods for Electric Smart Grids. Springer, 2014.

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20

Ponomarenko, Leonid, Che Soong Kim, and Agassi Melikov. Performance Analysis and Optimization of Multi-Traffic on Communication Networks. Springer, 2014.

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21

Ledwich, Gerard, Farhad Shahnia, and Ali Arefi. Electric Distribution Network Planning. Springer, 2018.

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22

Ledwich, Gerard, Farhad Shahnia, and Ali Arefi. Electric Distribution Network Planning. Springer, 2018.

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23

Ledwich, Gerard, Farhad Shahnia, and Ali Arefi. Electric Distribution Network Management and Control. Springer, 2019.

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24

Ledwich, Gerard, Farhad Shahnia, and Ali Arefi. Electric Distribution Network Management and Control. Springer, 2018.

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25

Ledwich, Gerard, Farhad Shahnia, and Ali Arefi. Electric Distribution Network Management and Control. Springer, 2018.

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26

Pardalos, P. M. Handbook of Optimization in Electric Power Distribution Systems. Springer, 2020.

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27

Load Flow Optimization and Optimal Power Flow. Taylor & Francis Group, 2017.

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28

Lakervi, E., and E. J. Holmes. Electricity Distribution Network Design (Power). Institution of Electrical Engineers, 1996.

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29

Dr, Novak Istvan, ed. Power distribution network design methodologies. Chicago, IL: International Engineering Consortium, 2008.

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30

Zhou, Yimin. Microgrid Load Optimization Based on Generalized Demand Side Resources. Nova Science Publishers, Incorporated, 2018.

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31

Sechilariu, Manuela. Urban DC Microgrid: Intelligent Control and Power Flow Optimization. Butterworth-Heinemann Limited, 2016.

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32

Smart Power Distribution Systems: Control, Communication, and Optimization. Academic Press, 2018.

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33

Power Distribution Network Design for VLSI. Wiley-Interscience, 2004.

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34

Zhu, Qing K. Power Distribution Network Design for VLSI. Wiley & Sons, Incorporated, John, 2008.

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35

Convex Optimization of Power Systems. Cambridge University Press, 2015.

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36

E, Zaffanella L., High-Voltage Transmission Research Center, Ontario Hydro, and Electric Power Research Institute, eds. Network analysis of ground currents in a residential distribution system. Palo Alto, Calif: Electric Power Research Institute, 1991.

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37

Lakervi, E., and E. J. Holmes. Electricity Distribution Network Design (I E E Power Engineering Series). 2nd ed. Peter Peregrinus Ltd, 1996.

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38

United Nations. Economic and Social Commission for Western Asia., ed. Technical and economic aspects of the establishment of a regional electricity network. New York: United Nations, 1997.

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39

An Optimization of the Hub-and-Spoke Distribution Network in United States European Command. Storming Media, 2002.

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40

Preece, Robin. Improving the Stability of Meshed Power Networks: A Probabilistic Approach Using Embedded HVDC Lines. Springer, 2013.

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41

Preece, Robin. Improving the Stability of Meshed Power Networks: A Probabilistic Approach Using Embedded HVDC Lines. Springer, 2016.

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42

Meng, Xiangping, and Zhaoyu Pian. Intelligent Coordinated Control of Complex Uncertain Systems for Power Distribution and Network Reliability. Elsevier Science & Technology Books, 2015.

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43

Monticelli, A. State Estimation in Electric Power Systems. Springer, 2012.

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44

Monticelli, A. State Estimation in Electric Power Systems: A Generalized Approach (Power Electronics and Power Systems). Springer, 1999.

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45

Power Over Ethernet Interoperability. McGraw-Hill Professional Publishing, 2012.

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46

IEEE Industry Applications Society. Power Systems Reliability Subcommittee. and IEEE Standards Board, eds. IEEE recommended practice for the design of reliable industrial and commercial power systems. New York: Institute of Electrical and Electronics Engineers, 1998.

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47

-J, Lerchenmhüller H., Muller E, and United States. National Aeronautics and Space Administration., eds. Optimization of a thermoelectric IR-detector for low working temperature. [Washington, DC: National Aeronautics and Space Administration, 1993.

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48

Newman, Mark. Models of network formation. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198805090.003.0013.

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This chapter describes models of the growth or formation of networks, with a particular focus on preferential attachment models. It starts with a discussion of the classic preferential attachment model for citation networks introduced by Price, including a complete derivation of the degree distribution in the limit of large network size. Subsequent sections introduce the Barabasi-Albert model and various generalized preferential attachment models, including models with addition or removal of extra nodes or edges and models with nonlinear preferential attachment. Also discussed are node copying models and models in which networks are formed by optimization processes, such as delivery networks or airline networks.
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49

IP Network-based Multi-agent Systems for Industrial Automation: Information Management, Condition Monitoring and Control of Power Systems. Springer, 2006.

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50

Buse, David P., and Q. H. Wu. IP Network-based Multi-agent Systems for Industrial Automation: Information Management, Condition Monitoring and Control of Power Systems. Springer, 2010.

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