DocumentCode :
1702566
Title :
Multiple anti-windup loops under multiple static activations: Enlargement of the domain of attraction
Author :
Xiongjun Wu ; Ziyang Meng
Author_Institution :
802 Inst. of Shanghai Acad. of Space Flight Technol., Eighth Acad. of China Aerosp. Sci. & Technol. Corp., Shanghai, China
fYear :
2013
Firstpage :
909
Lastpage :
914
Abstract :
Anti-windup design is an intuitive and efficient way to deal with input saturation nonlinearities. In the classic anti-windup design, the compensator is set to be activated immediately as the control signal saturates the actuator. An important innovation in the anti-windup activation mechanism is to delay the activation of the anti-windup mechanism until the saturation reaches to a certain severity which led to a performance improvement of the resulting closed-loop system. More recently, it was shown that by activating a static anti-windup mechanism in anticipation of actuator saturation, significant further performance improvements can be achieved in comparison with the delayed activation design. In addition, we have combined both the delayed and anticipatory activation mechanisms, to develop the multiple activation strategy, in terms of ℒ2 gain performance. This paper furthermore considers the problem of enlarging domain of attraction and demonstrates that the multiple activation of a static multiple feedback anti-windup mechanism would also lead to significant performance improvements over both the immediate and delayed activation schemes.
Keywords :
actuators; closed loop systems; feedback; iterative methods; actuator saturation; anticipatory activation mechanisms; antiwindup activation mechanism; closed-loop system; delayed activation design; delayed activation schemes; domain of attraction enlargement; immediate activation schemes; multiple activation strategy; multiple antiwindup loops; multiple static activations; static antiwindup mechanism; Actuators; Aerospace electronics; Closed loop systems; Constraint optimization; Vectors; Windup; Actuator saturation; anti-windup; anticipatory activation; domain of attraction; multiple activation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (CCC), 2013 32nd Chinese
Conference_Location :
Xi´an
Type :
conf
Filename :
6639557
Link To Document :
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