DocumentCode
3288423
Title
Design of the self-organizing fuzzy PID controller based on chaos particle swarm algorithm
Author
Wei, Huang ; Yinghe, Zhu ; Lingyun, Xue ; Deyun, Song
Author_Institution
Sch. of Autom., Hangzhou Dianzi Univ., Hangzhou, China
fYear
2011
fDate
15-17 April 2011
Firstpage
1321
Lastpage
1327
Abstract
A self-organizing fuzzy PID controller (SFPID), which is composed of a PID type fuzzy controller (FPID) and a self organizing adjustment mechanism, is proposed to provide the balance of the control precision and dynamic performance. A normalized acceleration introduced into the self-organizing mechanism, as an indicator of system response speed, is used to identify the system error and various stages in whole control process. The integral and derivative coefficients of FPID are adjusted in an online manner with the aid of the normalized acceleration. For avoiding complex adjustment of parameters in the design of controllers and attaining optimal control properties, a chaos particle swarm optimization algorithm (CPSO) is applied to optimizing the SFPID parameters, in which chaotic searching is employed to overcome the particle´s ´inertia´, and improve the global search performance and local convergence. The results of the application to typical controlled objects and LED source meter measuring system show that the SFPID exhibits good dynamic performance and robustness to the uncertainty of system parameters, which can effectively eliminate steady-state deviations with minor overshooting.
Keywords
control system synthesis; fuzzy control; optimal control; particle swarm optimisation; self-adjusting systems; three-term control; LED source-meter measuring system; chaos particle swarm optimization algorithm; optimal control properties; self organizing fuzzy PID controller design; Acceleration; Chaos; Convergence; Light emitting diodes; Optimization; Particle swarm optimization; Steady-state; LED source-meter measuring system; chaotic search; fuzzy PID controller; particle swarm optimization; self-tuning;
fLanguage
English
Publisher
ieee
Conference_Titel
Electric Information and Control Engineering (ICEICE), 2011 International Conference on
Conference_Location
Wuhan
Print_ISBN
978-1-4244-8036-4
Type
conf
DOI
10.1109/ICEICE.2011.5778041
Filename
5778041
Link To Document