The Research Status and Development Trend of Active Power Filter

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Abstract:

Power quality is getting worse with the extensive application of nonlinear loads, and active power filter technology is the effective way to settle the problem. This paper introduces the basic theory and the sorts of active power filters at first. Then the key technologies of active power filter are discussed in detail. Finally, based on some problems about current situation of active power filters, the directions of its development are analyzed in this paper.

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1487-1490

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Y. J. Ma, H. D. Yuan and X. S Zhou. Review of Harmonic Detection for Active Power Filter, Bio-Medical Materials and Engineering, Advanced Materials Research Vol. 749 IISN: 10226680.

Google Scholar

[2] Asiminoaei L, Blaabjerg F, Hansen S. Detection is key Harmonic detection methods for active power filter applications [J] . IEEE INDUSTRY APPL ICATIONS MA GAZINE, 2007 , 13 (4) : 22233.

DOI: 10.1109/mia.2007.4283506

Google Scholar

[3] Singh B, Anuradha , Kothari D P. Analysis of a novel active filter for balancing and reactive power compensation. Power Electronics and Variable Speed Drives [C]. 1998. Seventh International Conference on (Conf. Publ. No. 456), 1998, (5) : 57262.

DOI: 10.1049/cp:19980500

Google Scholar

[4] Shyh Jier Huang , Jinn Chang Wu. A control algorithm for three-phase three-wired active power filters under nonideal mains voltages [ J ] . Power Electronics , IEEE Transactions on, 1999 , 14 (4) : 7532760.

DOI: 10.1109/63.774215

Google Scholar

[5] Xin Limin , Xu Weisheng , Yu Youling. A Fast Harmonic Detection Method Based on Recursive DFT [ C ]. Electronic Measurement and Instruments, 2007. ICEMI '07. 8th International Conference on, 2007 , (3) : 9722976.

DOI: 10.1109/icemi.2007.4351082

Google Scholar

[6] Tolbert L M , Habetler T G. Comparison of time based reactive power definitions for active filtering[J ] . Power Electronics Congress, 2000. CIEP 2000. VII IEEE International, 2000 , (3) : 73279.

DOI: 10.1109/ciep.2000.891394

Google Scholar

[7] Singh B, Anuradha , Kothari D P. Analysis of a novel active filter for balancing and reactive power compensation. Power Electronics and Variable Speed Drives [C]. 1998. Seventh International Conference on (Conf. Publ. No. 456), 1998, (5) : 57262.

DOI: 10.1049/cp:19980500

Google Scholar

[8] Shyh Jier Huang , Jinn Chang Wu. A control algorithm for three-phase three-wired active power filters under nonideal mains voltages [ J ] . Power Electronics , IEEE Transactions on, 1999 , 14 (4) : 7532760.

DOI: 10.1109/63.774215

Google Scholar

[9] Xin Limin , Xu Weisheng , Yu Youling. A Fast Harmonic Detection Method Based on Recursive DFT [ C ]. Electronic Measurement and Instruments, 2007. ICEMI '07. 8th International Conference on, 2007 , (3) : 9722976.

DOI: 10.1109/icemi.2007.4351082

Google Scholar

[10] Costa F F, Cardoso J M , Darlan A Fernandes. Harmonic Analysis Based on Kalman Filtering and Prony's Method[J ] . POWERENG 2007 , 2007 : 1962701.

Google Scholar

[11] Kay S M, Marple S L Jr. Spectrum analysis: A modern perspective[J] . Proceedings of the IEEE , 1981 , 69 (11) : 138021419.

Google Scholar

[12] Nakajima T, Tamura M, Masada E. Compensation of no stationary harmonics using active power filter with Prony's spectral estimation [ C] . Power Electronics Specialists Conference , 1988. PESC'88 Record. , 19th Annual IEEE , 1988 , 2 : 116021167.

DOI: 10.1109/pesc.1988.18257

Google Scholar