Title :
T-S fuzzy coordinated control for power unit based on multi-objective optimization
Author :
Hao wan-jun ; Qiao yan-hui ; Li Ze ; Wu yong-zhi ; Gao han-wen ; Yang Jun
Author_Institution :
Coll. of Mech. & Electr. Eng., Suzhou Univ. of Sci. & Tecnology, Suzhou, China
Abstract :
Based on multi-objective optimization control, fuzzy state feedback control and Set Point tracking control strategy, A novel scheme for the coordinated control of power units is presented. Firstly, a fuzzy state space model of boiler-turbine system is built. Then, based on the model and pole placement design, a state feedback controller with asymptotic tracking performance is proposed. Because the system has nonlinear, strong coupling, variable condition, parameter time-varying characteristics, which led to the optimum parameters of pole placement are difficult to determine. In order to guarantee dynamic performance, stability and control variable constraints of the system, a multi-objective optimization method for pole placement based on particle swarm optimization is exploited. This control system has good tracking property with zero steady-state error and can reject input disturbances, the controller works well even if some parameters change. Simulation results show that the system designed by the proposed method gives satisfactory regulation quality within wide operating range.
Keywords :
boilers; control system synthesis; fuzzy control; nonlinear control systems; particle swarm optimisation; pole assignment; stability; state feedback; state-space methods; time-varying systems; turbines; T-S fuzzy coordinated control; asymptotic tracking performance; boiler-turbine system; control variable constraint; coupling condition; dynamic performance; fuzzy state feedback controller design; fuzzy state space model; multiobjective optimization method; nonlinear control system; parameter time-varying characteristics; particle swarm optimization; pole placement design; power unit; regulation quality; set point tracking control strategy; stability; zero steady-state error; Equations; Mathematical model; Optimization; Stability analysis; State feedback; Valves; Boiler-turbine system; Coordinated control; Multi-objective Optimization; Pole assignment; T-S Fuzzy Control; particle swarm optimization;
Conference_Titel :
Control and Decision Conference (CCDC), 2013 25th Chinese
Conference_Location :
Guiyang
Print_ISBN :
978-1-4673-5533-9
DOI :
10.1109/CCDC.2013.6561580