A Novel Comprehensive Draw-Out Power Circuit of High Voltage Thyristor

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Abstract:

The method of self-energy extracting has been adopted in high voltage thyristor device more and more widely. In consequence of the existing insufficient of high heat loss and large variation range of storage voltage value, this paper designs a novel comprehensive draw-out power circuit which is suitable for almost all kinds of working conditions of thyristor. The circuit includes voltage draw-out power module, current draw-out power module and the coordination control module between them. The principle of each module has been detailed analyzed and the calculation formulas of the corresponding parameters have been concisely given. At last, every conclusion drawn in this paper has been verified in simulation.

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Periodical:

Advanced Materials Research (Volumes 986-987)

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1901-1905

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Online since:

July 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] WANG Bao-hua, CHEN Mi and so on. An Unit to Gain Coupling High Side Trigger Power for Series Thyristor stack [J]. Power Electronics, 2009 43 (1) 46-48.

Google Scholar

[2] LIU Fei, LU Zhi-liang, LIU Yan, Xu Zheng. Thyristor Photoelectric Firing and Monitoring System Applied to TCR[J]. High Voltage Engineering, 2007 33(6) 123-128.

Google Scholar

[3] REN Xiao-dong, CHEN Shu-yong, JIANG Tao. Design of High Side Energy Extracting Device for Active Electronic Current Transformer [J]. Power System Technology, 2008 32 (18) 67-72.

Google Scholar

[4] LI Xianzhi and so on, A novel Scheme of Draw-out Power Supply Utilized in Transmission Line State Monitoring [J]. Automation of Electric Power System, 2008 32 (1) 76-80.

Google Scholar

[5] DING Zhigang and so on, A novel Converter Draw-out Power Circuit [J]. Automation of Electric Power Systems, 2013 37 (12) 109-113.

Google Scholar

[6] GUO Lin-yun and so on, Research of Improving Power Efficiency for Intelligent Device Self-power Supply Utilized in Power Distribution Network [J]. Proceedings of CSEE, 2009 29 217-221.

Google Scholar