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2021 | OriginalPaper | Chapter

3. Identification of Power System Dynamics

Authors : Gerard Ledwich, Arash Vahidnia

Published in: Phasors for Measurement and Control

Publisher: Springer International Publishing

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Abstract

To identify oscillations and damping system identification is required but to develop control processes low order models and a control approach applicable to nonlinear systems are desired. This chapter introduces the model reduction process and the foundations of energy based control.

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Literature
1.
go back to reference G. Ledwich, E. Palmer, Modal estimates from normal operation of power systems, in 2000 IEEE Power Engineering Society Winter Meeting Conference (2000), pp. 1527–1531 G. Ledwich, E. Palmer, Modal estimates from normal operation of power systems, in 2000 IEEE Power Engineering Society Winter Meeting Conference (2000), pp. 1527–1531
2.
go back to reference P. Billingsley, Probability and Measure (Wiley, New York, Chichester, Brisbane, Toronto, Singapore, 1995) P. Billingsley, Probability and Measure (Wiley, New York, Chichester, Brisbane, Toronto, Singapore, 1995)
3.
go back to reference G.J. Miao, Signal Processing in Digital Communications (Artech House, Norwood, 2007).MATH G.J. Miao, Signal Processing in Digital Communications (Artech House, Norwood, 2007).MATH
4.
go back to reference M.S. Roden, Analog and Digital Communication Systems, 4th edn. (Prentice Hall, Upper Saddle River, NJ, 1996). M.S. Roden, Analog and Digital Communication Systems, 4th edn. (Prentice Hall, Upper Saddle River, NJ, 1996).
5.
go back to reference B.D.O. Anderson, Optimal Filtering (Dover Publications, Newburyport, 2012). B.D.O. Anderson, Optimal Filtering (Dover Publications, Newburyport, 2012).
6.
go back to reference A. Vahidnia, G. Ledwich, E. Palmer, A. Ghosh, Identification and estimation of equivalent area parameters using synchronised phasor measurements. IET Generat. Trans. Distrib. 8, 697–704 (2014) A. Vahidnia, G. Ledwich, E. Palmer, A. Ghosh, Identification and estimation of equivalent area parameters using synchronised phasor measurements. IET Generat. Trans. Distrib. 8, 697–704 (2014)
7.
go back to reference A. Vahidnia, L. Meegahapola, G. Ledwich, R. Memisevic, Application of wide-area controls in Australian power system, in 2017 IEEE PES Innovative Smart Grid Technologies Conference Europe (ISGT-Europe), 26–29 Sept. 2017 (Piscataway, NJ, USA, 2017), p. 6 A. Vahidnia, L. Meegahapola, G. Ledwich, R. Memisevic, Application of wide-area controls in Australian power system, in 2017 IEEE PES Innovative Smart Grid Technologies Conference Europe (ISGT-Europe), 26–29 Sept. 2017 (Piscataway, NJ, USA, 2017), p. 6
8.
go back to reference R.J. Frowd, J.C. Giri, R. Podmore, Transient stability and long-term dynamics unified. IEEE Power Eng. Rev. PER 2, 40–41 (1982) R.J. Frowd, J.C. Giri, R. Podmore, Transient stability and long-term dynamics unified. IEEE Power Eng. Rev. PER 2, 40–41 (1982)
9.
go back to reference A. Vahidnia, G. Ledwich, E. Palmer, A. Ghosh, Wide-area control through aggregation of power systems. IET Generat. Trans. Distribut. 9, 1292–1300 (2015) A. Vahidnia, G. Ledwich, E. Palmer, A. Ghosh, Wide-area control through aggregation of power systems. IET Generat. Trans. Distribut. 9, 1292–1300 (2015)
10.
go back to reference M. Pai, Energy Function Analysis for Power System Stability (Springer, 1989) M. Pai, Energy Function Analysis for Power System Stability (Springer, 1989)
11.
go back to reference P. Kundur, Power System Stability and Control (McGraw-Hill, New York, 1994). P. Kundur, Power System Stability and Control (McGraw-Hill, New York, 1994).
12.
go back to reference J. Wenyun, J. Qi, K. Sun, Simulation and analysis of cascading failures on an NPCC power system test bed, in 2015 IEEE Power & Energy Society General Meeting (2015), pp. 1–5. J. Wenyun, J. Qi, K. Sun, Simulation and analysis of cascading failures on an NPCC power system test bed, in 2015 IEEE Power & Energy Society General Meeting (2015), pp. 1–5.
13.
go back to reference A. Vahidnia, G. Ledwich, E. Palmer, A. Ghosh, Identification and estimation of equivalent area parameters using synchronised phasor measurements. IET Generat. Trans. Distribut. 8, 697–704 (2014) A. Vahidnia, G. Ledwich, E. Palmer, A. Ghosh, Identification and estimation of equivalent area parameters using synchronised phasor measurements. IET Generat. Trans. Distribut. 8, 697–704 (2014)
14.
go back to reference Y. Xue, Y. Zhang, Z. Gao, P. Rousseaux, L. Wehenkel, M. Pavella, et al., Dynamic extended equal area criterion-part 2. Enlbeclding fast valving and automatic voltage regulation, in Proceedings of Joint International Power Conference Athens Power Technology (1993), pp. 896–900 Y. Xue, Y. Zhang, Z. Gao, P. Rousseaux, L. Wehenkel, M. Pavella, et al., Dynamic extended equal area criterion-part 2. Enlbeclding fast valving and automatic voltage regulation, in Proceedings of Joint International Power Conference Athens Power Technology (1993), pp. 896–900
15.
go back to reference A. Vahidnia, G. Ledwich, Y. Mishra, Correction factors for dynamic state estimation of aggregated generators, in 2015 IEEE Power & Energy Society General Meeting, 26–30 July 2015 (Piscataway, NJ, USA, 2015), pp. 1−5 A. Vahidnia, G. Ledwich, Y. Mishra, Correction factors for dynamic state estimation of aggregated generators, in 2015 IEEE Power & Energy Society General Meeting, 26–30 July 2015 (Piscataway, NJ, USA, 2015), pp. 1−5
16.
go back to reference A. Vahidnia, G. Ledwich, Y. Mishra, Correction factors for dynamic state estimation of aggregated generators, in 2015 IEEE Power & Energy Society General Meeting (2015), pp. 1–5 A. Vahidnia, G. Ledwich, Y. Mishra, Correction factors for dynamic state estimation of aggregated generators, in 2015 IEEE Power & Energy Society General Meeting (2015), pp. 1–5
17.
go back to reference J. Fernandez-Vargas, G. Ledwich, Variable structure control for power systems stabilization. Int. J. Electri. Power Energy Syst. 32, 101–107 (2010) J. Fernandez-Vargas, G. Ledwich, Variable structure control for power systems stabilization. Int. J. Electri. Power Energy Syst. 32, 101–107 (2010)
18.
go back to reference E. Palmer, Multi-Mode Damping of Power System Oscillations (University of Newcastle, Australia, 1998). E. Palmer, Multi-Mode Damping of Power System Oscillations (University of Newcastle, Australia, 1998).
19.
go back to reference A. Vahidnia, G. Ledwich, E. Palmer, A. Ghosh, Wide-area control of aggregated power systems, in 2013 Australasian Universities Power Engineering Conference (AUPEC), 29 Sept.-3 Oct. 2013 (Piscataway, NJ, USA, 2013), p. 6 A. Vahidnia, G. Ledwich, E. Palmer, A. Ghosh, Wide-area control of aggregated power systems, in 2013 Australasian Universities Power Engineering Conference (AUPEC), 29 Sept.-3 Oct. 2013 (Piscataway, NJ, USA, 2013), p. 6
20.
go back to reference Current, Event Replay of 26.02.2008 Florida blackout caused by substation short circuit fault near Miami, ed: Current (2013) Current, Event Replay of 26.02.2008 Florida blackout caused by substation short circuit fault near Miami, ed: Current (2013)
21.
go back to reference C. Zhihuang, C. Li, Dynamic and variable structure control for dual-arm space robot to track desired trajectory in workspace, in 2006 Chinese Control Conference (2006), pp. 1547–1551 C. Zhihuang, C. Li, Dynamic and variable structure control for dual-arm space robot to track desired trajectory in workspace, in 2006 Chinese Control Conference (2006), pp. 1547–1551
22.
go back to reference M. Nohmi, M. Uchiyama, Dynamics and 3-axes control of a spacecraft with flexible structures, in Proceedings of 35th IEEE Conference on Decision and Control, vol. 3 (1996), pp. 2695–2700 M. Nohmi, M. Uchiyama, Dynamics and 3-axes control of a spacecraft with flexible structures, in Proceedings of 35th IEEE Conference on Decision and Control, vol. 3 (1996), pp. 2695–2700
23.
go back to reference A. Vahidnia, G. Ledwich, E. Palmer, A. Ghosh, Generator coherency and area detection in large power systems. IET Generat. Trans. Distribut. 6, 874–883 (2012) A. Vahidnia, G. Ledwich, E. Palmer, A. Ghosh, Generator coherency and area detection in large power systems. IET Generat. Trans. Distribut. 6, 874–883 (2012)
24.
go back to reference K.S. Chandrashekhar, D.J. Hill, Cutset stability criterion for power systems using a structure-preserving model. Int. J. Electri. Power Energy Syst. 8, 146–157 (1986) K.S. Chandrashekhar, D.J. Hill, Cutset stability criterion for power systems using a structure-preserving model. Int. J. Electri. Power Energy Syst. 8, 146–157 (1986)
25.
go back to reference F. Moyano, G. Ledwich, Load modelling: induction motor, in Electric Power Systems in Transition, ed. Nova Science Publisher Inc (2010) F. Moyano, G. Ledwich, Load modelling: induction motor, in Electric Power Systems in Transition, ed. Nova Science Publisher Inc (2010)
26.
go back to reference K.R. Padiyar, Power System Dynamics: Stability & Control (Anshan, 1996) K.R. Padiyar, Power System Dynamics: Stability & Control (Anshan, 1996)
27.
go back to reference J.H. Chow, Time-Scale Modeling of Dynamic Networks with Applications to Power Systems (Springer, New York, 1982).CrossRef J.H. Chow, Time-Scale Modeling of Dynamic Networks with Applications to Power Systems (Springer, New York, 1982).CrossRef
28.
go back to reference J.H. Chow, R. Galarza, P. Accari, W.W. Price, Inertial and slow coherency aggregation algorithms for power system dynamic model reduction. IEEE Trans. Power Syst. 10, 680–685 (1995)CrossRef J.H. Chow, R. Galarza, P. Accari, W.W. Price, Inertial and slow coherency aggregation algorithms for power system dynamic model reduction. IEEE Trans. Power Syst. 10, 680–685 (1995)CrossRef
29.
go back to reference H. Kim, G. Jang, K. Song, Dynamic reduction of the large-scale power systems using relation factor. IEEE Trans. Power Syst. 19, 1696–1699 (2004)CrossRef H. Kim, G. Jang, K. Song, Dynamic reduction of the large-scale power systems using relation factor. IEEE Trans. Power Syst. 19, 1696–1699 (2004)CrossRef
30.
go back to reference G. Ledwich, E. Palmer, Modal estimates from normal operation of power systems, in IEEE Power Engineering Society Winter Meeting, vol. 2 (2000), pp. 1527–1531 G. Ledwich, E. Palmer, Modal estimates from normal operation of power systems, in IEEE Power Engineering Society Winter Meeting, vol. 2 (2000), pp. 1527–1531
31.
go back to reference J.S. Pires de Souza, A.M. Leite da Silva, An efficient methodology for coherency-based dynamic equivalents [power system analysis]. Generat. Trans. Distribut. IEE Proc. C 139, 371–382 (1992)CrossRef J.S. Pires de Souza, A.M. Leite da Silva, An efficient methodology for coherency-based dynamic equivalents [power system analysis]. Generat. Trans. Distribut. IEE Proc. C 139, 371–382 (1992)CrossRef
32.
go back to reference D. Chaniotis, M.A. Pai, Model reduction in power systems using Krylov subspace methods, in IEEE Power Engineering Society General Meeting, 2005, vol. 2 (2005), p. 1412 D. Chaniotis, M.A. Pai, Model reduction in power systems using Krylov subspace methods, in IEEE Power Engineering Society General Meeting, 2005, vol. 2 (2005), p. 1412
33.
go back to reference N. Ramaswamy, G.C. Verghese, L. Rouco, C. Vialas, C.L. DeMarco, Synchrony, aggregation, and multi-area eigenanalysis. IEEE Trans. Power Syst. 10, 1986–1993 (1995)CrossRef N. Ramaswamy, G.C. Verghese, L. Rouco, C. Vialas, C.L. DeMarco, Synchrony, aggregation, and multi-area eigenanalysis. IEEE Trans. Power Syst. 10, 1986–1993 (1995)CrossRef
34.
go back to reference B. Marinescu, B. Mallem, L. Rouco, Large-scale power system dynamic equivalents based on standard and border synchrony. IEEE Trans. Power Syst. 25, 1873–1882 (2010) B. Marinescu, B. Mallem, L. Rouco, Large-scale power system dynamic equivalents based on standard and border synchrony. IEEE Trans. Power Syst. 25, 1873–1882 (2010)
35.
go back to reference H. You, V. Vittal, W. Xiaoming, Slow coherency-based islanding. IEEE Trans. Power Syst. 19, 483–491 (2004) H. You, V. Vittal, W. Xiaoming, Slow coherency-based islanding. IEEE Trans. Power Syst. 19, 483–491 (2004)
36.
go back to reference A. Ghosh, G. Ledwich, O.P. Malik, G.S. Hope, Power system stabilizer based on adaptive control techniques. IEEE Trans. Power Apparat. Syst. PAS 103, 1983–1989 (1984) A. Ghosh, G. Ledwich, O.P. Malik, G.S. Hope, Power system stabilizer based on adaptive control techniques. IEEE Trans. Power Apparat. Syst. PAS 103, 1983–1989 (1984)
Metadata
Title
Identification of Power System Dynamics
Authors
Gerard Ledwich
Arash Vahidnia
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-67040-5_3