DocumentCode
1026043
Title
Model Reference Adaptive Control Design for a Shunt Active-Power-Filter System
Author
Shyu, Kuo-Kai ; Yang, Ming-Ji ; Chen, Yen-Mo ; Lin, Yi-Fei
Author_Institution
Nat. Central Univ., Taoyuan
Volume
55
Issue
1
fYear
2008
Firstpage
97
Lastpage
106
Abstract
In this paper, model reference adaptive control (MRAC) is proposed for a single-phase shunt active power filter (APF) to improve line power factor and to reduce line current harmonics. The proposed APF controller forces the supply current to be sinusoidal, with low current harmonics, and to be in phase with the line voltage. The advantages of using MRAC over conventional proportional-integral control are its flexibility, adaptability, and robustness; moreover, MRAC can self-tune the controller gains to assure system stability. Since the APF is a bilinear system, it is hard to design the controller. This paper will solve the stability problem when a linearization method is used to solve the nonlinearity of the system. Moreover, by using Lyapunov´s stability theory and Barbalat´s lemma, an adaptive law is designed to guarantee an asymptotic output tracking of the system. To verify the proposed APF system, a digital signal controller (dsPIC30F4012) is adopted to implement the algorithm of MRAC, and a 1-kVA laboratory prototype is built to test feasibility. Experimental results are provided to verify the performance of the proposed APF system.
Keywords
Lyapunov methods; active filters; bilinear systems; linearisation techniques; model reference adaptive control systems; power factor; power filters; Barbalat´s lemma; Lyapunov´s stability theory; MRAC design; bilinear system; digital signal controller; line current harmonics reduction; line power factor; linearization method; model reference adaptive control; shunt active-power-filter system; single-phase APF controller; Active filters; Adaptive control; Control systems; Force control; Pi control; Power harmonic filters; Power system harmonics; Power system modeling; Reactive power; Robust stability; Active power filter (APF); harmonics; model reference adaptive control (MRAC); power factor (PF);
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2007.906131
Filename
4418532
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