Title :
Mixed-sensitivity approach to H∞ control of power system oscillations employing multiple FACTS devices
Author :
Chaudhuri, B. ; Pal, B.C. ; Zolotas, A.C. ; Jaimoukha, I.M. ; Green, T.C.
Abstract :
This paper demonstrates the enhancement of inter-area mode damping by multiple flexible AC transmission systems (FACTS) devices. Power system damping control design is formulated as an output disturbance rejection problem. A decentralized H∞, damping control design based on the mixed-sensitivity formulation in the linear matrix inequality (LMI) framework is carried out. A systematic procedure for selecting the weights for shaping the open loop plant for control design is suggested. A 16-machine, 5-area study system reinforced with a controllable series capacitor (CSC), a static VAr compensator (SVC) and a controllable phase shifter (CPS) at different locations is considered. The controllers designed for these devices are found to effectively damp out inter-area oscillations. The damping performance of the controllers is examined in the frequency and time domains for various operating scenarios. The controllers are found to be robust in the face of varying power-flow patterns, nature of loads, tie-line strengths and system nonlinearities, including device saturations.
Keywords :
H∞ control; controllers; damping; flexible AC transmission systems; linear matrix inequalities; oscillations; power system control; static VAr compensators; FACTS devices; H∞ control; LMI; SVC; controllable phase shifter; controllable series capacitor; flexible AC transmission systems; frequency domains; inter-area mode damping; inter-area oscillations; linear matrix inequality; open loop plant; power system damping control design; power system oscillations; power-flow patterns; robustness; static VAr compensator; tie-line strengths; time domains; Capacitors; Control design; Control systems; Damping; Flexible AC transmission systems; Linear matrix inequalities; Open loop systems; Power system control; Power systems; Static VAr compensators;
Conference_Titel :
Power Engineering Society General Meeting, 2003, IEEE
Print_ISBN :
0-7803-7989-6
DOI :
10.1109/PES.2003.1270999