Please use this identifier to cite or link to this item: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/8587
Title: Optimal siting, sizing, and parameter tuning of STATCOM and SSSC using MPSO and remote coordination of the FACTS for oscillation damping of power systems
Authors: Ambafi, J. G.
Adamu, S. S.
Keywords: FACTS devices, interarea oscillations, phasor measurement units,
stability, wide-area, coordination
Issue Date: Nov-2019
Publisher: Tubitak
Citation: AMBAFI, J. G. and ADAMU S. S. (2019). Optimal siting, sizing, and parameters tuning of STATCOM, SSSC using MPSO and remote coordination of the FACTS for oscillation damping of power systems. Turkish Journal of Electrical Engineering & Computer Science. doi: 10.3906/elk-1811-14
Series/Report no.: 27;
Abstract: In electromechanical oscillation damping within power system, power system stabilizers (PSSs) are often deployed. However, a PSS is less effective in damping interarea oscillation and is limited by changes in network confguration due to weak tie-lines and load variations. Consequently, this paper presents a wide-area coordination approach that damps interarea oscillations using FACTS devices and phasor measurement units. We selected a static synchronous compensator (STATCOM) and static series synchronous compensator (SSSC) for realistic power system interarea oscillation damping. The performance of the coordinated FACTS installed in a power system depends on their suitable locations, sizes, tuned parameters, and remote input signal selection. Hence, we formulated a multiobjective problem to provide the STATCOM and SSSC’s optimal solutions using multiobjective particle swarm optimization. In addition, we employed a participation factor to select suitable generator speed deviations as the wide area stabilizing signal. The proposed approach was tested on different confgurations of the Kundur 2-area 4-machine test system within MATLAB and Psat environments. The outcome of the nonlinear simulation proved that the multimachine power system stability was enhanced.
Description: Role of FACTS devices in oscillation damping.
URI: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/8587
Appears in Collections:Electrical/Electronic Engineering

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