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Robust PI, gain scheduled and PSS controller design using LMI regions: Comparative studies


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[1] M. Chilali and P. Gahinet, “H Design with Pole Placement Constraints: An LMI Approach”, IEEE Trans on AC vol. 41, no. 3, pp. 358–367, 1996.10.1109/9.486637Search in Google Scholar

[2] D. Peaucelle, D. Alzenier, O. Bachelier, and J. Bernussou, “A New Robust D-Stability Condition for Real Convex Polytopic Uncertainty”, Systems Control Letters vol. 40, pp. 21–30, 2000.10.1016/S0167-6911(99)00119-XSearch in Google Scholar

[3] M. Chilali, P. Gahinet, and P. Apkarian, “Robust Pole Placement in LMI Regions”, IEEE Trans on AC, vol. 44, no. 12, pp. 2257–2270, 1999.10.1109/9.811208Search in Google Scholar

[4] M. Bouhamide and M. A. Danai, “Robust Stabilizer of Electric Power Generator using H1 with Pole Placement Constraints”, J. of El. Engineering vol. 56, no. 8, pp. 176–182, 1999.Search in Google Scholar

[5] P. S. Rao and I. Sen, “Robust Pole Placement Stabilizer Design Using Linear Matrix Inequalities”, IEEE Trans on Power Systems vol. 15, no. 1, pp. 313–319, 1999.10.1109/59.852138Search in Google Scholar

[6] V. Syrmos Ch. Abdallah, M. Dorato, and K. Grigari-Adis, “Static Output Feedback: A Survey”, Conference paper in Automatica vol. 33, no. 2, V1, pp. 837–842, Jan 1995.10.1016/S0005-1098(96)00141-0Search in Google Scholar

[7] P. Gahinet, P. Apkarian, and M. Chilali, “Affine Parameter-Dependent Lyapunov Functions Real Parametric Uncertainty”, IEEE Transactions on Automatic Control vol. 41, no. 3, pp. 436–442, Mar 1996.10.1109/9.486646Search in Google Scholar

[8] T. Lahdhiri and A. T. Alouani, “Nonlinear Excitation Control of a Synchronous Generator with Implicit Terminal Voltage Regulation”, Electric Power System Research vol. 36, pp. 101–112, 1996.10.1016/0378-7796(95)01022-XSearch in Google Scholar

[9] S. A. Pavlushko, “Automatic Excitation Control of Synchronous Generators as an Effective Means to Ensure the Reliable Parallel Operation of Generation Equipment the United Power System as a Whole”, Power Technology Engineering vol. 46, no. 5, pp. 399–406, 1996.10.1007/s10749-013-0368-7Search in Google Scholar

[10] J. Alveraz-Ramirez, I. Cervantes, R. Escarela-Perez, and G. Espriasa-Perez, “A Two-Loop Excitation Control System for Synchronnous Generators”, Electrical Power Energy Systems vol. 27, pp. 556–566, 2005.10.1016/j.ijepes.2005.08.001Search in Google Scholar

[11] M. Cao, T. L. Shen, Y. H. Song, and S. W. Mei, “Non-Linear Disturbance Attenuation Controller for Turbo-Generators in Power Systems via Recursive Design”, Proc. of the 2002 Int, Conf, on Control Applications University of Groningen, vol. 2, pp. 938–943, 2002.Search in Google Scholar

[12] A. A. Ba-Mugabel and M. A. Abido, “Review of Conventional Power System Stabilizer Design Methods”, IEEEGCC Conference IE, Manama, 1–7, March 2006.10.1109/IEEEGCC.2006.5686203Search in Google Scholar

[13] E. Ghalipour and S. M. Nosratabadi, “A New Coordination Strategy of SSSC PSS Controllers on Power System using SOA Algorithm based on Pareto Method”, Electrical Power Energy Systems, vol. 67, pp. 462–471, 2015.10.1016/j.ijepes.2014.12.020Search in Google Scholar

[14] P. Zhao, W. Yao, J. Wen, L. Jiang, S. Wang, and S. Cheng, “Improved Synergetic Excitation Control for Transient Stability Enhancement Voltage Regulation of Power Systems”, Electrical Power Energy Systems vol. 68, pp. 44–51, 2015.10.1016/j.ijepes.2014.12.056Search in Google Scholar

[15] H. Liu, Z. Hu, and Y. Song, “Lyapunov-based Decen-tralized Excitation Control for Global Asymptotic Stability Voltage regulation of Multi-Machine Power Systems”, IEEE Trans. on Power Systems vol. 27, no. 4, pp. 2262–2270, 2012.10.1109/TPWRS.2012.2196716Search in Google Scholar

[16] P. Kundur, M. Klein, G. J. Rogers, and M. S. Zywno, “Application of Power System Stabilizers for Enhancement of Overall System Stability”, IEEE Trans. on Power Systems vol. 4, no. 2, pp. 614–624, 1989.10.1109/59.193836Search in Google Scholar

[17] S. Dechanupaprittha, I. Ngamroo, and Y. Mitani, “Decentralized Design of Robust Power System Stabilizers Considering System Uncertainties”, Power Tech IEEE Russia, CD-ROM, 2005.10.1109/PTC.2005.4524556Search in Google Scholar

[18] V. Vesely and A. Kozakova, “Robust PSS Design for a Multivariable Power System”, Power Tech Russia, CD-ROM, 2005.10.1109/PTC.2005.4524658Search in Google Scholar

[19] H. Liu, J. Qi, J. Wang, and P. Li, “Decentralized Voltage Power Regulation Control of Excitation Governor System with Global Asymptotic Stability”, submitted to the IEEE Trans. on Power systems Cite as: arXiv: 1509, 00421[math, OC], 2015.Search in Google Scholar

[20] M. Aldeen and F. Grusca, “Multimachine Power System Stabilizer Design based on New LQR Approach”, IEE Proc. Gener. Trans. Distrib. vol. 142, no. 5, pp. 494–502, 1995.10.1049/ip-gtd:19952043Search in Google Scholar

[21] V. A. Venikov, “Transient Electromechanical Pro-Cesses in Electric Power Systems”, Vyssaja skola Moscow, 1985, (in Russian).Search in Google Scholar

[22] P. Kundur, “Power System Stability Control”, McGraw-Hill Inc New York, 1994.Search in Google Scholar

[23] J. Machovski, J. W. Bialek, and J. R. Bumby, “Power System Dynamic Stability Control” John Wiley Sons, Ltd, 2008.Search in Google Scholar

[24] V. Vesely and A. Ilka, “Gain-Scheduled PID Controller Design”, Journal of Process Control, vol. 23, pp. 1141–1148, 2013.10.1016/j.jprocont.2013.07.002Search in Google Scholar

[25] V. Vesely and D. Rosinova, “Robust PID-PSD Controller Design: BMI Approach”, Asian Journal of Control vol. 15, no. 2, pp. 469–478, 2013.10.1002/asjc.559Search in Google Scholar

[26] M. R. Esmaili, A. Khodabakhshian, P. Ghaebi Panah, and S. Azirkhan, “A New Robust Multi-Machine Power System Stabilizer Design Using Quantitative Feedback Theory”, Procedia Technology vol. 11, pp. 75–85, 2013.10.1016/j.protcy.2013.12.164Search in Google Scholar

[27] A. E. Leona, J. M. Mauriciob, and J. A. Solsonaa, “Multi-Machine Power System Stability Improvement using an Observer-based Nonlinear Controller”, Electric Power Systems Research, 89, pp. 204–214, 2012.10.1016/j.epsr.2012.01.022Search in Google Scholar

[28] A. Khodabakhshian and R. Hemmati, “Robust Decentralized Multi-Machine Power System Stabilizer Design using Quantitative Feedback Theory”, Electrical Power Energy Systems vol. 41, pp. 112–119, 2012.10.1016/j.ijepes.2012.03.023Search in Google Scholar

[29] V. Vesely, “Robust Decentralized Power System Controller Design”, J. of Electrical Engineering vol. 68, no. 5, pp. 349–356, 2017.10.1515/jee-2017-0066Search in Google Scholar

[30] Y. Tamura ansd and N. Yorino, “Possibility of Auto-Hetero-Parametric Resonances in Power Systems their Relationship with Long-Term Dynamics”, IEEE Trans on Power Systems vol. PWRS-2, no. 4, pp. 890–896, Nov 1987.10.1109/TPWRS.1987.4335269Search in Google Scholar

[31] D. J. Leith and W. E. Leithead, “Survey of Gain-Scheduling Analysis Design”, International Journal of Control vol. 73, no. 11, pp. 1001–1025.10.1080/002071700411304Search in Google Scholar

[32] M. Sato and D. Peaucelle, “Gain-Scheduled Output-Feedback Controllers using Inexact Scheduling Parameters for Continuous-Time LPV Systems”, Automatica vol. 49, no. 4, pp. 1019–1025,April 2013.10.1016/j.automatica.2013.01.034Search in Google Scholar

[33] C. W. Scherer, “Gain Scheduling Control with Dynamic Multipliers by Convex Optimization”, Siam Journal on Control Optimization, vol. 53, no. 3, pp. 1224–1249, 2015.10.1137/140985871Search in Google Scholar

[34] V. Vesely and A. Ilka, “Design of Robust Gain-Scheduled PI Controllers”, Journal of Franklin Institute, vol. 352, pp. 1476–1494, 2015.10.1016/j.jfranklin.2015.01.009Search in Google Scholar

[35] W. J. Rugh and J. S. Shamma, “Survey Research on Gain Scheduling”, Automatica vol. 36, no. 10, pp. 1401–1425, Oct 2000.10.1016/S0005-1098(00)00058-3Search in Google Scholar

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