DocumentCode :
1148955
Title :
An Implementation of an Adaptive Control Algorithm for a Three-Phase Shunt Active Filter
Author :
Singh, Bhim ; Solanki, Jitendra
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol., New Delhi, India
Volume :
56
Issue :
8
fYear :
2009
Firstpage :
2811
Lastpage :
2820
Abstract :
This paper deals with the hardware implementation of a shunt active filter (SAF) for compensation of reactive power, unbalanced loading, and harmonic currents. SAF is controlled using an adaptive-linear-element (Adaline)-based current estimator to maintain sinusoidal and unity-power-factor source currents. Three-phase load currents are sensed, and using least mean square (LMS) algorithm-based Adaline, online calculation of weights is performed and these weights are multiplied by the unit vector templates, which give the fundamental-frequency real component of load currents. The dc bus voltage of voltage source converter (VSC) working as a SAF is maintained at constant value using a proportional-integral controller. The switching of VSC is performed using hysteresis-based pulsewidth-modulation indirect-current-control scheme, which controls the source currents to follow the derived reference source currents. The practical implementation of the SAF is realized using dSPACE DS1104 R&D controller having TMS320F240 as a slave DSP. The MATLAB-based simulation results and implementation results are presented to demonstrate the effectiveness of the SAF with Adaline-based control for load compensation.
Keywords :
PI control; active filters; adaptive control; electric current control; least squares approximations; power factor correction; power harmonic filters; power system control; reactive power control; Adaline; DS1104; TMS320F240; adaptive control; adaptive linear element; current estimator; harmonic currents; hysteresis based pulsewidth modulation indirect current control; least mean square algorithm; proportional integral controller; reactive power compensation; three phase shunt active filter; unbalanced loading; unity power factor; voltage source converter; Adaptive linear element (Adaline); harmonics; reactive power; shunt active filter (SAF); unbalance;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2009.2014367
Filename :
4776510
Link To Document :
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