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高压直流换流阀饱和电抗器基本原理研究 被引量:5

Study on the basic principle of the high voltage DC converter valve
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摘要 介绍了高压直流输电换流阀饱和电抗器基本原理、构成及特点;分析了饱和电抗器的作用功能;对于电抗器的特性进行了详细的论述和研究,最后给出了基于某直流输电工程实际运行情况的高压直流换流阀饱和电抗器的铁损仿真实验。 This paper introduces the HVDC converter valve saturation reactor basic principle, structure and characteristics;analyzes, the function of saturable reactor;the reactor characteristics are discussed and studied, finally the simulation experiment of a high voltage DC loss of HVDC project based on the actual operation of the converter valves aresaturable reactor.
作者 赵冀川
出处 《电子测试》 2016年第12期44-45,共2页 Electronic Test
关键词 高压直流 换流阀 饱和电抗器 特性分析 铁损磁滞仿真 HVDC commutation valve saturated reactor characteristic analysis simulation of hysteresis loss
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  • 1蓝元良,汤广福,印永华,周孝信.串联晶闸管反向恢复暂态过程的研究[J].电网技术,2006,30(16):15-19. 被引量:48
  • 2张文亮,周孝信,郭剑波,印永华,汤涌,郭强.±1000kV特高压直流在我国电网应用的可行性研究[J].中国电机工程学报,2007,27(28):1-5. 被引量:122
  • 3Arrillaga J,Liu Y H,Watson N R. Flexible power transmission—the HVDC options[M].New York,USA:John Wiley & Sons,2007.57-63.
  • 4Guo H,Tang G F,Wen J L. Analysis on voltage distribution performance of HVDC thyristor valves[A].Hangzhou,China:CSEE,2010.1-6.
  • 5BradlefM E. An advanced thyristor valve for HVDC transmission[D].Birmingham,UK:University of Aston in Birmingham,1988.
  • 6Barnes M J. The prediction and control of transients in thyristor valves[D].Birmingham,UK:University of Aston in Birmingham,1985.
  • 7Kobayashi S,Tanabe S,Itoh K. Study of turn-on test method for high-voltage thyristor valve[J].{H}IEEE Transactions on Power Delivery,1993,(1):83-89.doi:10.1109/61.180322.
  • 8Woodhouse M L. Voltage and current stresses on HVDC valves[J].{H}IEEE Transactions on Power Delivery,1987,(1):199-206.
  • 9Tadokoro M,Yamamoto T,Shoji Y. Numberical investigation of the effect of valve reactor design on thyristor stress in a HVDC thyristor valve[A].Los Angeles,USA:IEEE,1996.320-325.
  • 10Kobayashi I. Thyristor valve turn-on stress analysis and optimization of the valve design[J].Journal of IEE Japan,1087,(11):1363-1370.

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