DocumentCode :
175746
Title :
A fast weight optimization method in H Loop-shaping Design for single input single output system
Author :
Liu Yuyan ; Zhou Shiliang
Author_Institution :
Sch. of Control & Comput. Eng., North China Electr. Power Univ., Beijing, China
fYear :
2014
fDate :
May 31 2014-June 2 2014
Firstpage :
1072
Lastpage :
1077
Abstract :
A weight optimization method for single input single output system H Loop-shaping Design is addressed. Using the proposed method, suboptimal weight which meets constraints of desired loop-shaping and grade of amplitude-frequency curve of weight can be obtained. Acceptable range of amplitude-frequency curve of weight is also given, in which maximum robust stable margin is kept. Designer can choose low order whose amplitude-frequency curve is within this range no matter how much fitting error between the selected weight and optimal amplitude-frequency is. Simulation results show that the proposed method can maximize the robust stable margin while ensuring loop shape of open loop plant lives in a pre-defined region and grade of weight less than the value given by designer. Stable lightly damped pole-zero cancellation is prevented, which is attributed to grade constraint of amplitude-frequency curve of the synthesized weight. And corresponding program is at least 100 times faster than similar optimization algorithm which completely is based on linear matrix inequality technology.
Keywords :
H optimisation; linear matrix inequalities; poles and zeros; robust control; H infinity loop-shaping design; damped pole-zero cancellation; linear matrix inequality technology; maximum robust stable margin; open loop plant; optimal amplitude-frequency curve; optimization algorithm; single input single output system; suboptimal weight; weight optimization method; Fitting; Frequency control; Optimization; Robust stability; Robustness; Shape; Transfer functions; H Loop Shaping; Lightly Damped System; Robust Control; Weight Optimization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control and Decision Conference (2014 CCDC), The 26th Chinese
Conference_Location :
Changsha
Print_ISBN :
978-1-4799-3707-3
Type :
conf
DOI :
10.1109/CCDC.2014.6852324
Filename :
6852324
Link To Document :
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