Robust Controller Design Survey for Damping Low Frequency Oscillations in Power Systems

Author(s):  
Yuan Peng ◽  
Hassan Nouri ◽  
Quan Min Zhu ◽  
Lei Cheng
Author(s):  
Khashayar Torabi Farsani ◽  
Navid Vafamand ◽  
Mohammad Mehdi Arefi ◽  
Mohammad Hassan Asemani ◽  
Mohammad S. Javadi ◽  
...  

Author(s):  
Soudamini Behera ◽  
Ajit Kumar Barisal ◽  
Nirmalya Dhal ◽  
Deepak Kumar Lal

AbstractThis paper presents an optimal design of a static synchronous series compensator (SSSC)-based controller for damping of low-frequency oscillations in multi-machine power systems. The proposed controller design problem is formulated to the optimization problem. The tuning of controller parameters can be obtained by employing a new hybrid differential evolution and particle swarm optimization (hDE-PSO) algorithm. To justify the effectiveness of the proposed SSSC-based damping controller, three-machine and four-machine power systems have been considered. The hDE-PSO algorithm outperforms in the damping of oscillations over DE and PSO algorithms. Various simulation results are presented and compared for different load disturbances like three-phase fault, load rejection and tripping of one parallel transmission line. The simulation results ensure the robustness of the proposed controller.


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