Recursive Integral with Fuzzy Control Method used in Shunt Hybrid Active Power Filter

A current control method for a shunt hybrid active power filter (HAPF) using recursive integral algorithm is presented in this paper. The method improves performance of the HAPF system by reducing the influence of detection accuracy, time delay of instruction current calculation and phase displaceme...

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Published inEnergy procedia Vol. 16; pp. 1753 - 1759
Main Authors Zhao, Wei, Chen, Ruimin, Luo, An
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 2012
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ISSN1876-6102
1876-6102
DOI10.1016/j.egypro.2012.01.271

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Abstract A current control method for a shunt hybrid active power filter (HAPF) using recursive integral algorithm is presented in this paper. The method improves performance of the HAPF system by reducing the influence of detection accuracy, time delay of instruction current calculation and phase displacement of output filter. Fuzzy logic based set-point weighing algorithm is combined in the control scheme to enhance its robustness and anti-interference ability. The proposed algorithm is easy for engineering application and has small computation capacity. Experiment results have verified the validity of the proposed controller. Furthermore the proposed recursive integral PI algorithm can also be applied in the control of periodic current as in AC drivers.
AbstractList A current control method for a shunt hybrid active power filter (HAPF) using recursive integral algorithm is presented in this paper. The method improves performance of the HAPF system by reducing the influence of detection accuracy, time delay of instruction current calculation and phase displacement of output filter. Fuzzy logic based set-point weighing algorithm is combined in the control scheme to enhance its robustness and anti-interference ability. The proposed algorithm is easy for engineering application and has small computation capacity. Experiment results have verified the validity of the proposed controller. Furthermore the proposed recursive integral PI algorithm can also be applied in the control of periodic current as in AC drivers.
Author Zhao, Wei
Chen, Ruimin
Luo, An
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Keywords harmonic suppression
reactive power compensation
fuzzy inference
recursive integral PI
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– reference: , vol. 45, pp. 722-729, Oct. 1998.
– reference: Lin Gan, He Zhihua, Li Zhengguo, “An Intelligent Instrument for Integrated Harmonic Detection, Analysis and Protection,” Automation of Electric Power Systems, 2000,24(1), 64-66.
– reference: , 2005,41(6),1684-1690.
– reference: S. Buso, L. Malesani, and P. Mattavelli, “Comparison of current control techniques for active filter applications,”
– reference: H. Fujita, H. Agaki, “The Unified Power Quality Conditioner of Seriesand Shunt -Active Filters,”
– reference: Teresa Esther Núñez-Zúñiga, José Antenor Pomilio, “Shunt Active Power Filter Synthesizing Resistive Loads,”
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– reference: Leonid Reznik, Omar Ghanayem, Anna Bourmistrov, “PID plus fuzzy controller structures as a design base for industrial applications,” Engineering Applications of Artificial Intelligence, 2000, 13:419-430.
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– reference: Lorenz R D, Lipo T A, Novotny D W, “Motion control with induction motors,” Proceedings of the IEEE, 1994, 82(8), 1115-1135.
– reference: , 2000,5(4):660-669.
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– reference: , 2002,17(2), 273-278.
– reference: V. Soares, P. Verdelho, G.D. Marques, “An instantaneous active and reactive current component method for active filters,”
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Snippet A current control method for a shunt hybrid active power filter (HAPF) using recursive integral algorithm is presented in this paper. The method improves...
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SubjectTerms fuzzy inference
harmonic suppression
reactive power compensation
recursive integral PI
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Title Recursive Integral with Fuzzy Control Method used in Shunt Hybrid Active Power Filter
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