DocumentCode
2620597
Title
Computer Control Design of Active Power Filter Based on the Energy Shaping Control Principle
Author
Zhishan, Liang ; Zhengxian, Xie ; Xueliang, Wei ; Huaguang, Zhang
Author_Institution
Fac. of Mech. & Electron. Eng., China Univ. of Pet., Beijing, China
Volume
7
fYear
2009
fDate
March 31 2009-April 2 2009
Firstpage
196
Lastpage
200
Abstract
Active Power Filter (APF) is useful device to compensate the harmonics which are caused by the nonlinear load, and its performance index mainly depends on the parameter design and structure of controller. In order to solve this problem, new Hamilton model of active power filter is introduced and the Energy Shaping Control Principle is used to design controller which corrects the output current waveform from three-phase three-wire shunt active power filter and further enhances load current waveforms. In this control strategy, the Energy Shaping Controller is used to guarantee dynamic stability of distribution power system caused by load harmonics. The controller design procedure is analyzed in detail. Experimental results demonstrate the validity of the proposed control method.
Keywords
active filters; compensation; control system synthesis; load distribution; power distribution control; power harmonic filters; power system dynamic stability; power system harmonics; Hamilton model; active power filter; computer control design; distribution power system dynamic stability; energy shaping control principle; harmonics compensation; nonlinear load; output current waveform; parameter design; performance index; three-phase three-wire shunt active power filter; Active filters; Control design; Control systems; Performance analysis; Power harmonic filters; Power system analysis computing; Power system dynamics; Power system harmonics; Power system stability; Shape control; active power filter; energy shaping principle; nonlinear control;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Science and Information Engineering, 2009 WRI World Congress on
Conference_Location
Los Angeles, CA
Print_ISBN
978-0-7695-3507-4
Type
conf
DOI
10.1109/CSIE.2009.489
Filename
5170308
Link To Document