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Tytuł artykułu

Parallel fuzzy logic and PI controller for transient stability and voltage regulation of power system including wind turbine

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
PL
Poprawa stabilności i sterowalności napięcia w systemie z turbinami wiatowymi dzięki stosowaniu równolegle logiki rozmytej i sterownika PI
Języki publikacji
EN
Abstrakty
EN
In this paper, transient stability and voltage regulation have been studied using Fuzzy Logic (FL) and PI controller tuned by Bees Algorithm (BA). Both controllers applied to a Single Machine Infinite Bus (SMIB) power system equipped by Static Var Compensator (SVC) and small wind turbine. Transient stability has been evaluated using a relative rotor criteria and the Critical Clearing Time (CCT) which has been calculated for cases considered for different mechanical ratio. Voltage regulation has been improved using SVC controlled by PI controller which her. parameters have been optimized by Bees Algorithm (BA). Obtained results have been demonstrated a better performance with FL and PI controller which CCT has been increased and decreased considerably
PL
W artykule analizowano system energetyczny z dołączonymi turbinami wiatrowymi pod kątem stabilności i mozliwości sterowania napieciem. Do tego celu wukoprzystano logikę rozmytą I sterowniki PI strojony za pośrednictwem algorytmu rojowego. Stabilność była poprawiona dzięki zastosowaniu metody CCT – critical cleaning time.
Rocznik
Strony
51--56
Opis fizyczny
Bibliogr. 25 poz., rys., tab.
Twórcy
autor
  • Department of Electrical Engineering, Faculty of technology, M’sila University, M’sila, Algeria
  • Department of Electrical Engineering, Faculty of Engineering, Bouira University, Bouira, Algeria
  • Electrical Engineering, Faculty of technology, M’sila University, M’sila, Algeria
autor
  • Department of Electrical Engineering, Faculty of Engineering, Bouira University, Bouira, Algeria
Bibliografia
  • [1] M. Klein, G. Rogers, & P. Kundur. A fundamental study of inter-area oscillations in power systems, IEEE Trans on Power Syst; 6: pp. 914– 921, 1991.
  • [2] Kundur P. Power System Stability and Control. McGraw-Hill; 1994.
  • [3] M. Klein, G.J. Rogers, S. Moorty, & P. Kundur. Analytical Investigation of Factors Influencing Power System Stabilizers Performance, IEEE Trans. on Energy Conversion;7:382-390, 1992.
  • [4] Larsen EV, Swann DA. Applying power system stabilizers parts I–III. IEEE Trans Power Ap Syst; 100:3017–46, 1981.
  • [5] Segal R, Sharma A, & Kothari ML. A self-tuning power system stabilizer based on artificial neural network. Int J Electr Power Energy Syst; 26(6):423–30, 2004.
  • [6] D. Shen and P.W. Lehn, "Modeling, Analysis and Control of a Current Source Inverter-Based STATCOM", IEEE Trans. on Power Delivery, Vol. 17, No. 1, pp 248-253, January 2002.
  • [7] M.A. Abido, "Analysis and assessment of STATCOM-based damping stabilizers for power system stability enhancement", Electric Power Systems Research, Vol. 73, No. 2, pp 177-185, February 2005.
  • [8] Abdel-Magid YL, & Abido MA. Optimal multi-objective design of robust power system stabilizers using genetic algorithms. IEEE Trans Power Syst; 18 (3): 1125-32, 2003.
  • [9] Shayeghi H, Shayanfar HA, Safari A, & Aghmasheh R. A robust PSSs design using PSO in a multimachine environment. Int J Energy Convers Manage; 51 (4):696–702, 2010.
  • [10] Asit Mohantyb Meera Viswavandyac Sthitapragyan Mohantyd Dillip K Mishra, “Intelligent Controller based SVC for voltage stability improvement in a Stand-alone wind-diesel-micro hydro hybrid system”, Procedia Computer Science, Vol. 57, 1308 – 1316, 2015.
  • [11] Dawood Amoozegar, “DSTATCOM modelling for voltage stability with fuzzy logic PI current controller”, Electr Power Energy Syst; 76 129–135, 2016.
  • [12] Xiaoyan Biana, Yan Genga, Fangqi Yuanb, Kwok L. Loc, Yang Fua, “Identification and improvement of probabilistic voltage instabilitymodes of power system with wind power integration”, Electric Power Systems Research, 140, 162–172, 2016.
  • [13] Alireza Fereidouni, Mohammad A.S. Masoum, Tahoura Hosseinimehr, Moayed Moghbel, “Performance of LR-type solid-state fault current limiter in improving power quality and transient stability of power network with wind turbine generators”, Electr Power Energy Syst; 74 ,172–186, 2016.
  • [14] Md. Kamal Hossain, Mohd. Hasan Ali, “Transient stability augmentation of PV/DFIG/SG-based hybrid powersystem by parallel-resonance bridge fault current limiter”, Electric Power Systems Research, 130, 89–102, 2016.
  • [15] Freddy Milla, Manuel A, Duarte-Mermoud, “Predictive optimized adaptive PSS in a single machine infinite bus”, ISA Transactions, 63, 315–327, 2016.
  • [16] Asit Mohanty, Meera Viswavandya, Sthitapragyan Mohanty, “An optimised FOPID controller for dynamic voltage stability and reactive power management in a stand-alone micro grid”, Electr Power Energy Syst; 78, 524–536, 2016.
  • [17] Zhen Ni, Yufei Tang, Xianchao Sui, Haibo He, Jinyu Wen, “An adaptive neuro-control approach for multi-machine power systems”, Electr Power Energy Syst; 75, 108–116, 2016.
  • [18] Nitin Kumar Saxena, Ashwani Kumar, “Reactive power control in decentralized hybrid power system with STATCOM using GA, ANN and ANFIS methods”, Electr Power Energy Syst; 83, 175–187, 2016.
  • [19] Bindeshwar Singha,, V. Mukherjeeb, Prabhakar Tiwari, “Genetic algorithm optimized impact assessment of optimally placed DGs and FACTS controller with different load models from minimum total real power loss viewpoint”, Energy and Buildings; 126, 194–219, 2016.
  • [20] YOUCEF OUBBATI, SALEM ARIF, transient stability constrained optimal power flow using improved particle swarm optimization approach, Rev. Roum. Sci. Techn. –\ Électrotechn.et Énerg., 61, 4, p. 331–337, 2016.
  • [21] Mohsen Bakhshi, Mohammad Hosein Holakooie, Abbas Rabiee, “Fuzzy based damping controller for TCSC using local measurements to enhance transient stability of power systems”, Electr Power Energy Syst; 85, 12–21, 2017.
  • [22] HILAL LABDELAOUI, FARES BOUDJEMA, DJAMEL BOUKHETALA, Multiobjective optimal design of dual-input power system stabilizer using genetic algorithms, Rev. Roum. Sci. Techn. – Électrotechn.et Énerg., 62, 1, p. 93–97, 2017.
  • [23] ABDELAZIZ MOURAD, GHEDJATI KELTOUM, Power system stabilizer based on terminal sliding mode control, Rev. Roum. Sci. Techn. – Électrotechn.et Énerg., 62, 1, p. 98–102, 2017.
  • [24] K. R. Padiyar. Power system dynamics stability and control. Anshan Limited; 2004.
  • [25] E.S. Ali and S.M. Abd-Elazim. TCSC damping controller design based on bacteria foraging optimization algorithm for a multimachine power system. Electrical Power and Energy Systems 2006; 28:349-357.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-47dc36ab-58e5-45b7-92ba-dc49fc8e705f
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