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LQR and LQG based optimal switching techniques for PSS and UPFC in power systems 被引量:1

LQR and LQG based optimal switching techniques for PSS and UPFC in power systems
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摘要 Selection of better optimized unified power flow controller (UPFC) control inputs along with simultaneous coordinated design of power system stabilizer (PSS) is a challenge in the present scenario of power systems. Hence, in this paper, four sets of experiments performed are presented. First set of experiments are without disturbance scenario where switching is done using linear quadratic regulators (LQR's). Second set is for power systems with disturbances using linear quadratic gaussian (LQG). Switching control algorithms presented here are tested on the single machine infinite bus (SMIB) linearised Phillips Heffron model of power system using MATLAB/SIMULINK~ platform. Selection of better optimized unified power flow controller (UPFC) control inputs along with simultaneous coordinated design of power system stabilizer (PSS) is a challenge in the present scenario of power systems. Hence, in this paper, four sets of experiments performed are presented. First set of experiments are without disturbance scenario where switching is done using linear quadratic regulators (LQR's). Second set is for power systems with disturbances using linear quadratic gaussian (LQG). Switching control algorithms presented here are tested on the single machine infinite bus (SMIB) linearised Phillips Heffron model of power system using MATLAB/SIMULINK~ platform.
出处 《Control Theory and Technology》 EI CSCD 2018年第1期25-37,共13页 控制理论与技术(英文版)
关键词 LQR LQG UPFC PSS power system SMIB LQR, LQG, UPFC, PSS, power system & SMIB
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