Hossein G. Goudarzi, Borzou Yousefi, Mohammad Rezvani, and Abdolreza N. Shirazi
[1] M. Rezaee, M.S. Moghadam, and S. Ranjbar, Online estimation of power system separation as controlled islanding scheme in the presence of inter-area oscillations, Sustainable Energy, Grids and Networks, 21, 2020, 137–166. [2] M.J. Alinezhad, M. Radmehr, and S. Ranjbar, Adaptive wide area damping controller for damping inter-area oscillations considering high penetration of wind farms, International Transactions on Electrical Energy Systems, 30(6), 2020, 135– 143. [3] Final Report System Disturbance on 4 November 2006, Technical Report, Union for the Coordination of Transmission of Electricity (UCTE), 2007. [4] L.L. Lai, H.T. Zhang, and C.S. Lai, Investigation on July 2012 Indian blackout, Int. Conf. on Machine Learning and Cybernetics, Tianjin, China, 2013, 92–97. [5] M. Qasim and K. Kotani, An empirical analysis of energy shortage in Pakistan, Asia-Pacific Development Journal, 21, 2014, 137–166. [6] H. You, V. Vittal, and X. Wang, Slow coherency-based islanding, IEEE Transactions on Power Systems, 19(1), 2004, 483–491. [7] S. Ranjbar, M. Aghamohammadi, and F. Haghjoo, A new scheme of WADC for damping inter-area oscillation based on CART technique and Thevenine impedance, Electrical Power and Energy Systems, 94, 2018, 339–353. [8] Y.L. Karnavas and D.P. Papadopoulos, AGC for autonomous power system using combined intelligent techniques, Electric Power Systems Research, 62(3), 2002, 225–239. [9] A. Kyriacou, S. Timotheou, M. Michaelides, C. Panayiotou, and M. Polycarpou, Multi-constraint building partitioning formulation for effective contaminant detection and isolation, IEEE World Congress on Computational Intelligence, Vancouver, BC, Canada, 2016, 24–29. [10] P. Fern´andez-Porras, M. Panteli, and J. Quir´os-Tort´os, Intentional controlled islanding: when to island for power system blackout prevention, IET Generation, Transmission & Distribution, 12(14), 2018, 8–14. [11] S. Kamali, T. Amraee, and S.M.T. Bathaee, Prediction of unplanned islanding using an energy based strategy, IET Generation, Transmission & Distribution, 10(1), 2016, 183–191. [12] T. Amraee and H. Saberi, Controlled islanding using transmission switching and load shedding for enhancing power grid resilience, International Journal of Electrical Power & Energy Systems, 91(1), 2017, 135–143. [13] A. Kyriacou, P. Demetriou, C. Panayiotou, and E. Kyriakides, Controlled islanding solution for large-scale power systems, IEEE Transactions on Power Systems, 33(2), 2018, 1591–1602. [14] M. Bhadu, N. Senroy, I.N. Kar, et al., Robust linear quadratic Gaussian-based discrete mode wide area power system damping controller, IET Generation, Transmission & Distribution, 10(6), 2016, 1470–1478. [15] S. Ghosh, K. Folly, and A. Patel, Synchronized versus non- synchronized feedback for speed-based wide-area PSS: effect of time-delay, IEEE Transactions on Smart Grid, PP(99), 2016, 1. [16] M.E. Raoufat, K. Tomsovic, and S.M. Djouadi, Dynamic control allocation for damping of inter-area oscillations, IEEE Transactions on Power Systems, 32(6), 2017, 4894–4903. [17] B.P. Padhy, S.C. Srivastava, and N.K. Verma, A wide-area damping controller considering network input and output delays and packet drop, IEEE Transactions on Power Systems, 32(1), 2017, 166–176. [18] F. Lian, A. Chakrabortty, and A. Duel-Hallen, Game-theoretic multi-agent control and network cost allocation under communication constraints, IEEE Journal on Selected Areas in Communications, 35(2), 2017, 330–40. [19] A. Molina-Cabrera, M.A. Rıos, Y. Besanger, and N. HadjSaid, A latencies tolerant model predictive control approach to damp inter-area oscillations in delayed power systems, International Journal of Electrical Power & Energy Systems, 98, 2018, 199–208. [20] G. Xu and V. Vittal, Slow coherency based cutset determination algorithm for large power systems, IEEE Transactions on Power Systems, 25(2), 2010, 877–884. [21] K. Sun, D. Zheng, and Q. Lu, Searching for feasible splitting strategies of controlled system islanding, IEE Proceedings— Generation, Transmission and Distribution, 153(1), 2006, 89–98. [22] L. Ding, F. Gonzalez, P. Wall, et al., Two-step spectral clustering controlled islanding algorithm, IEEE Transactions on Power Systems, 28(1), 2013, 75–84. [23] J. Li, C. Liu, and K. Schneider, Controlled partitioning of a power network considering real and reactive power balance, IEEE Transactions on Smart Grid, 1(3), 2010, 261–269. [24] S. Ranjbar, M. Aghamohammadi, and F. Haghjoo, Adaptive wide area damping controller for damping inter-area oscillations on power system, 24th Iranian Conf. on Electrical Engineering (ICEE), Shiraz, Iran, 2016. [25] S. Ranjbar, M. Aghamohammadi, and F. Haghjoo, Real time transient instability assessment based-on Bayesian theory, 23th Iranian Conf. on Electrical Engineering (ICEE), Tehran, Iran, 2015. [26] T. Amraee and S. Ranjbar, Transient instability prediction using decision tree technique, IEEE Transactions on Power Systems, 28(3), 2013, 3028–3037. [27] S. Ranjbar, M. Aghamohammadi, and F. Haghjoo, Determining wide area damping control signal (WADCS) based on C5.0 classifier, 24th Iranian Conf. on Electrical Engineering (ICEE), Shiraz, Iran, 2016. [28] K. Sun, K. Hur, and P. Zhang, A new unified scheme for controlled power system separation using synchronized phasor measurements, IEEE Transactions on Power Systems, 26(3), 2011, 1544–1554. [29] S. Ranjbar, M. Aghamohammadi, and F. Haghjoo, Real time wide area damping control signal to damp inter-area oscillation in power system, 25th Iranian Conf. on Electrical Engineering (ICEE), Tehran, Iran, 2017. [30] S. Ranjbar, M. Aghamohammadi, and F. Haghjoo, Damping inter-area oscillation in power system by using global control signals based on PSS devices, 25th Iranian Conf. on Electrical Engineering, Tehran, Iran, 2017. [31] J. Cepeda, J. Rueda, D. Colome, et al., Real-time transient stability assessment based on centre-of-inertia estimation from phasor measurement unit records, IET Generation, Transmission & Distribution, 8(8), 2014, 1363–1376. [32] R. Franco, C. Sena, G. Taranto, et al., Using synchrophasors for controlled islanding – a prospective application for the Uruguayan power system, IEEE Transactions on Power Systems, 28(2), 2013, 2016–2024. [33] I. Kamwa, A. Pradhan, G. Joos, et al., Fuzzy partitioning of a real power system for dynamic vulnerability assessment, IEEE Transactions on Power Systems, 24(3), 2009, 1356–1365. [34] L. Ding, P. Wall, and V. Terzija, Constrained spectral clustering based controlled islanding, International Journal of Electrical Power Energy Systems, 63, 2014, 687–694. [35] F. Li, Q. Zhang, and W. Zhang, Graph partitioning strategy for the topology design of industrial network, IET Communication, 1(6), 2007, 1104–1110. [36] K. Mei and S.M. Rovnyak, Response-based decision trees to trigger one-shot stabilizing control, IEEE Transactions on Power Systems, 19(1), 2004, 531–7. [37] H. Seyedi and M. Sanaye-Pasand, New centralised adaptive load-shedding algorithms to mitigate power system blackouts, IET Generation, Transmission & Distribution, 3(1), 2009, 99–114.
Important Links:
Go Back