Title :
Delay-Dependent Robust Load Frequency Control for Time Delay Power Systems
Author :
Chuan-Ke Zhang ; Jiang, L. ; Wu, Q.H. ; Yong He ; Min Wu
Author_Institution :
Sch. of Inf. Sci. & Eng., Central South Univ., Changsha, China
Abstract :
The usage of communication channels introduces time delays into load frequency control (LFC) schemes. Those delays may degrade dynamic performance, and even cause instability, of a closed-loop LFC scheme. In this paper, a delay-dependent robust method is proposed for analysis/synthesis of a PID-type LFC scheme considering time delays. The effect of the disturbance on the controlled output is defined as a robust performance index (RPI) of the closed-loop system. At first, for a preset delay upper bound, controller gains are determined by minimizing the RPI. Secondly, calculation of the RPIs of the closed-loop system under different delays provides a new way to assess robustness against delays and estimate delay margins. Case studies are based on three-area LFC schemes under traditional and deregulated environments, respectively. The results show that the PID-type controller obtained can guarantee the tolerance for delays less than the preset upper bound and provide a bigger delay margin than the existing controllers do. Moreover, its robustness against load variations and parameter uncertainties is verified via simulation studies.
Keywords :
closed loop systems; frequency control; load regulation; robust control; three-term control; PID-type LFC scheme; RPI; closed-loop LFC scheme; delay-dependent robust load frequency control; load variation; robust performance index; time delay power system; Closed loop systems; Delay; Delay effects; Economic indicators; Frequency control; Robustness; Upper bound; Delay-dependent robust method; PID control; load frequency control; robust performance index; time delays;
Journal_Title :
Power Systems, IEEE Transactions on
DOI :
10.1109/TPWRS.2012.2228281