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1

1951-, Chow J. H., Kokotović Petar V, and Thomas Robert J. 1942-, eds. Systems and control theory for power systems. New York: Springer-Verlag, 1995.

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2

1954-, Sun Yuanzhang, and Mei Shengwei 1964-, eds. Nonlinear control systems and power system dynamics. Boston, MA: Kluwer Academic Publishers, 2001.

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3

T, Leondes Cornelius, ed. Analysis and control system techniques for electric power systems. San Diego: Academic Press, 1991.

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4

Pavella, Mania. Transient stability of power systems: Theory and practice. Chichester: Wiley, 1994.

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5

Brown, David. Control engineering: Control system power and grounding better practice. Burlington, MA: Newnes, 2004.

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6

Engineers, Institution of Electrical. IEE proceedings: Electric power applications. London: Institution of Electrical Engineers, 1994.

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7

Steffen, Rebennack, Pardalos, P. M. (Panos M.), 1954-, Iliadis Niko A, Pereira Mario V. F, and SpringerLink (Online service), eds. Handbook of Networks in Power Systems II. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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8

Pardalos, P. M. (Panos M.), 1954-, Pereira Mario V. F, Iliadis Niko A, and SpringerLink (Online service), eds. Handbook of Power Systems II. Berlin, Heidelberg: Springer-Verlag Berlin Heidelberg, 2010.

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9

Steffen, Rebennack, Pardalos, P. M. (Panos M.), 1954-, Iliadis Niko A, Pereira Mario V. F, and SpringerLink (Online service), eds. Handbook of Networks in Power Systems I. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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10

Pérez-Arriaga, Ignacio J. Regulation of the Power Sector. London: Springer London, 2013.

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11

Fribourg, Laurent. Control of switching systems by invariance analysis: Application to power electronics. London: ISTE, 2013.

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12

Steffen, Rebennack, Pardalos, P. M. (Panos M.), 1954-, Pereira Mario V. F, Iliadis Niko A, and SpringerLink (Online service), eds. Handbook of CO₂ in Power Systems. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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13

Vilamitjana, Enric Rodríguez. Chaos in Switching Converters for Power Management: Designing for Prediction and Control. New York, NY: Springer New York, 2013.

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14

T, Leondes C., ed. Control and dynamic systems: Advances in theory and applications. San Diego: Academic Press, 1992.

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15

T, Leondes C., ed. Control and dynamic systems: Advances in theory and applications. San Diego: Academic Press, 1992.

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16

T, Leondes C., ed. Control and dynamic systems: Advances in theory and applications. San Diego: Academic Press, 1994.

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17

Trends, in Electronics Conference (1993 Peking China). Proceedings TENCON '93: 1993 IEEE Region 10 Conference on "Computer, Communication, Control and Power Engineering" : October 19-21, 1993, Beijing, Beijing International Convention Center, Beijing Continental Grand Hotel. Beijing, the People's Republic of China: International Academic Publishers, 1993.

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18

T, Leondes Cornelius, ed. System identification and adaptive control. Orlando: Academic Press, 1987.

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19

T, Leondes Cornelius, ed. Robust control system techniques and applications. San Diego, [Calif.]: Academic Press, 1992.

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20

Hanson, Ronald J. Implementing Closed-Loop Control Algorithms for DC-to-DC Converters and ARCP Inverters Using the Universal Controller. Ft. Belvoir: Defense Technical Information Center, 1997.

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21

Robyns, Benoit. Vector Control of Induction Machines: Desensitisation and Optimisation Through Fuzzy Logic. London: Springer London, 2012.

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22

T, Leondes Cornelius, ed. Digital and numeric techniques and their applications in control systems. San Diego: Academic Press, 1993.

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23

T, Leondes Cornelius, ed. Stochastic techniques in digital signal processing systems. San Diego: Academic Press, 1994.

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24

Computer-aided control systems design: Practical applications using MATLAB and Simulink. Boca Raton, FL: Taylor & Francis, 2012.

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25

T, Leondes Cornelius, ed. Computer-aided design/engineering (CAD/CAE) techniques and their applications. San Diego: Academic Press, 1993.

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26

Chow, Joe H. Systems and Control Theory For Power Systems. Springer, 2010.

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27

Sun, Yuanzhang, Shengwei Mei, and Qiang Lu. Nonlinear Control Systems and Power System Dynamics. Springer, 2010.

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28

Abhinav, Singh, and Bikash C. Pal. Dynamic Estimation and Control of Power Systems. Elsevier Science & Technology, 2018.

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29

Abhinav, Singh, and Bikash C. Pal. Dynamic Estimation and Control of Power Systems. Elsevier Science & Technology Books, 2018.

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30

Vedam, Rajkumar. Nonlinear control applied to power systems. 1994.

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31

Fribourg, Laurent, and Romain Soulat. Control of Switching Systems by Invariance Analysis: Applcation to Power Electronics. Wiley & Sons, Incorporated, John, 2013.

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32

Fribourg, Laurent, and Romain Soulat. Control of Switching Systems by Invariance Analysis: Applcation to Power Electronics. Wiley & Sons, Incorporated, John, 2013.

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33

Fribourg, Laurent, and Romain Soulat. Control of Switching Systems by Invariance Analysis: Applcation to Power Electronics. Wiley & Sons, Incorporated, John, 2013.

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34

Fribourg, Laurent, and Romain Soulat. Control of Switching Systems by Invariance Analysis: Applcation to Power Electronics. Wiley & Sons, Incorporated, John, 2013.

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35

Leong, Alex S., Daniel E. Quevedo, and Subhrakanti Dey. Optimal Control of Energy Resources for State Estimation over Wireless Channels. Springer International Publishing AG, 2017.

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36

Leondes, Cornelius T. Control and Dynamic Systems: Advances in Theory and Applications : Analysis and Control System Techniques for Electric Power Systems (Control and Dynamic Systems). Academic Pr, 1991.

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37

Control and Dynamic Systems: Advances in Theory and Applications : Analysis and Control System Techniques for Electric Power Systems (Control and Dynamic Systems). Academic Pr, 1991.

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38

Control and Dynamic Systems: Advances in Theory and Applications : Analysis and Control System Techniques for Electric Power Systems (Control and Dynamic Systems). Academic Pr, 1991.

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39

Leondes, Cornelius T. Control and Dynamic Systems: Advances in Theory and Applications : Analysis and Control System Techniques for Electric Power Systems (Control and Dynamic Systems). Academic Press, 1991.

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40

Banavar, Ravi N., and N. S. S. Manjarekar. Nonlinear Control Synthesis for Electrical Power Systems Using Controllable Series Capacitors. Springer, 2012.

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41

Banavar, Ravi N., and N. S. Manjarekar. Nonlinear Control Synthesis for Electrical Power Systems Using Controllable Series Capacitors. Springer, 2012.

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42

Analysis and Control System Techniques for Electric Power Systems: Advances in Theory and Applications. Elsevier Science & Technology Books, 1991.

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43

Monti, Antonello, Marco Cupelli, Mohsen Ferdowsi, Markus Mirz, and Antonino Riccobono. Modern Control of DC-Based Power Systems: A Problem-Based Approach. Elsevier Science & Technology Books, 2018.

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44

Monti, Antonello, Marco Cupelli, Mohsen Ferdowsi, Markus Mirz, and Antonino Riccobono. Modern Control of DC-Based Power Systems: A Problem-Based Approach. Elsevier Science & Technology Books, 2018.

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45

Lu, Qiang, Yuanzhang Sun, and Shengwei Mei. Nonlinear Control Systems and Power System Dynamics (The International Series on Asian Studies in Computer and Information Science). Springer, 2001.

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46

Leonides, C. T. Control and Dynamic Systems V42 : Analysis and Control System Techniques for Electric Power Systems Part 2: Advances in Theory and Applications. Elsevier Science & Technology Books, 2012.

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47

Dolgov, Alexandr P. Transitional regimes and stability of electric power systems. Novosibirsk State Technical University, 2022. http://dx.doi.org/10.17212/978-5-7782-4678-2.

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The issues of parallel operation of electrical systems are considered. Some major system crashes are described. The peculiarities of the electromechanical transition process in the electric power system are reflected. Angular characteristics of generator power, static characteristics of asynchronous motors and complex loads are analyzed. The main methods of analyzing the stability of electric power systems are described. The asynchronous mode is considered. Information on emergency automation used in modern conditions is given. The Park–Gorev equations are given; their place in the calculation of electromechanical transients of synchronous and asynchronous machines is mentioned. The issues of self-starting synchronous and asynchronous motors are considered. The material is accompanied by examples and control questions. The textbook meets the requirements of the State Educational Standard of Higher Professional Education for the preparation of bachelors in the direction "Electric Power and Electrical Engineering" (13.03.02 ) and masters in the direction "Electric Power and Electrical Engineering" (13.04.02). It can also be useful for graduate students.
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48

Leonides, C. T. Control and Dynamic Systems V41 : Analysis and Control System Techniques for Electric Power Systems Part 1 Of 4: Advances in Theory and Applications. Elsevier Science & Technology Books, 2012.

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49

Leonides, C. T. Control and Dynamic Systems V44 : Analysis and Control System Techniques for Electric Power Systems Part 4 Of 4: Advances in Theory and Applications. Elsevier Science & Technology Books, 2012.

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50

Pardalos, P. M. Handbook of Networks in Power Systems II. Springer, 2014.

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