Title :
Experimental evaluation of nonlinear robust control for SMES to improve the transient stability of power systems
Author :
Liu, Feng ; MEI, Shengwei ; Xia, Deming ; Ma, Yongjian ; Jiang, Xiaohua ; Lu, Qiang
Author_Institution :
Electr. Dept., Tsinghua Univ., Beijing, China
Abstract :
This paper presents a new approach and corresponding experiments for the nonlinear robust control of a superconducting magnetic energy storage (SMES) unit to improve the transient stability of power systems. Based on the result of SMES prototype experience, a new dynamic model with disturbances of SMES is adopted, and transferred to the per unit system for simplifying the dynamic analysis and controller design. Then, feedback linearization scheme and linear H∞ control theory are applied to design a novel SMES nonlinear robust controller in a one-machine infinite bus (OMIB) power system. In order to confirm such positive effects of the proposed control strategy, experiments are carried on a laboratory setup of SMES comparing that with a conventional proportional-integral (PI) controller. The results of the experiments demonstrate that the proposed nonlinear robust controller has more excellent performance to improve the transient stability of power systems than that of conventional PI controllers.
Keywords :
H∞ control; control system synthesis; feedback; linearisation techniques; nonlinear control systems; power system dynamic stability; power system transient stability; robust control; superconducting magnet energy storage; H∞ control theory; controller design; dynamic analysis; feedback linearization scheme; nonlinear robust control; one-machine infinite bus power system; power systems transient stability; superconducting magnetic energy storage; Nonlinear control systems; Power system control; Power system dynamics; Power system modeling; Power system stability; Power system transients; Power systems; Robust control; Robust stability; Samarium; 65; Nonlinear robust control; SMES; power system control; power system transient stability; superconducting magnetic energy storage;
Journal_Title :
Energy Conversion, IEEE Transactions on
DOI :
10.1109/TEC.2004.827703