Simulation and Research of Dynamic Voltage Detection and Regulator Based on MATLAB

Article Preview

Abstract:

The Series Dynamic Voltage Regulator can compensate the harmonics distortion caused by voltage type harmonic source This paper presents a new approach of detecting harmonic voltage in dq0 coordinates, based on the generalized instantaneous reactive power ,and used in the series dynamic voltage regulator successfully. It is demonstrated by theoretical analysis and simulation results that the proposed detecting method of harmonic voltage is correct and valid.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1527-1531

Citation:

Online since:

April 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Akigi H. New Trends in Acitve Filters for Power Conditioning[J]. IEEE Trans. on Inderstry Application, 1996, 32(6): 1312-1322.

Google Scholar

[2] Akagi H, Kanazawa Y. Nabae A. Generalized theory of the instantaneous reactive power in three-phase circuits IEEE&JIEE. Proceedings IPEC. Tokyo: IEEE, 1983: 1375-1386.

Google Scholar

[3] Depenbrock M. Formulating requirements for a universally applicable power theory as control algorithm in power compensators[C]. 2nd Internat Workshop on Power Definitions and Measurements under Non-sinusoidal Conditions, Stresa Italy, (1993).

DOI: 10.1002/etep.4450040602

Google Scholar

[4] LI Hongyu, WU Longhui, ZHUO fang etc. STUDY ON THE NOVEL FAST CURRENT DETECTION METHOD [J]. PROCEEDINGS OF THE CHINESE SOCIETY FOR ELECTRICAL ENGINEERING, 2005, 25(13): 57-62.

Google Scholar

[5] YU ZhiHao, LIU ZhiZhen, XU WenShang. A Detecting Approach of Harmonic Current Based on the Circuit Model and Artificial Neural Networks[J]. TRANSACTIONS OF CHINA ELECTROTECHNICAL SOCIETY. 2004, 19(9): 86-89.

Google Scholar

[6] Li GenYin, CHEN ZhiYe, DING QiaoLin etc. DEFINITION OF GENERALIZED INSTANTANEOUS REACTIVE POWER IN DQ0 COORDINATES AND ITS COMPERSATION[J]. PROCCEEDINGS OF THE CSEE. 1996, 16(3): 176-179.

Google Scholar

[7] HE YiHong, WANG Qun, ZHUO Fang etc. CONTROL STRATEGY ON SERIES VOLTAGE CONTROLLER[J]. AUTOMATION OF ELECTRIC POWER SYSTEMS. 2004, 28(18): 67-70.

Google Scholar

[8] LI DaYi, CHEN QiaoFu, XUE JianKe etc. THREE-PHASE ACTIVE POWER FILTER BASED ON FUNDAMENTAL MAGNETIC FLUX COMPENSATION[J]. AUTOMATION OF ELECTRIC POWER SYSTEMS . 2003, 27(11): 48-52.

Google Scholar

[9] Study on a novel approach to active power filter controlusingneural network-based harmonic identification scheme. Electr Eng (2010) 91: 313–325.

DOI: 10.1007/s00202-009-0143-9

Google Scholar

[10] Theoretical analysis of the harmonic characteristics of modular multilevel converters. XIAO HuangQing; XU Zheng; XUE YingLin; TANG Geng; SCIENCE CHINA. Technological Sciences November 2013 Vol. 56 No. 11: 2762–2770.

DOI: 10.1007/s11431-013-5331-1

Google Scholar

[11] Ultra-Low Power Pipeline Structure Exploiting Noncritical Stage with Circuit-Level Timing Speculation. Tao Luo; Ya-Juan He; Ping Luo; Yan-Ming He; Feng Hu. JOURNAL OF ELECTRONIC SCIENCE AND TECHNOLOGY, VOL. 11, NO. 3, SEPTEMBER 2013: 301-305.

Google Scholar