杂散电感对混合式直流断路器开断过电压的影响分析

Shushan Luo, Fu Wan, Yaxiong Tan, Weigen Chen, Lin Du, Han Yan
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引用次数: 2

摘要

直流断路器是维持直流系统安全可靠运行的关键设备。混合式直流断路器各支路存在杂散电感,在分断过程中由于电流上升率高而产生过电压,给直流系统的灵活性和可靠性带来不利影响。本文的目的是研究混合式直流断路器运行时内部杂散电感对过电压的影响。分析了混合式直流断路器主支路、转移支路和能耗支路的杂散电感分量,得到了三个支路的综合电感。基于PSCAD/EMTDC,建立了500kV混合式直流断路器模型。通过改变各支路杂散电感的大小,模拟研究了断路器分断过程中杂散电感对过电压的影响规律。结果表明,主支路杂散电感的增加对混合式直流断路器分断过程过电压无明显影响。而对于转移支路,杂散电感的增加导致过电压下降,不利于分断电压的建立。能耗支路杂散电感的增加延长了能耗时间。为混合式直流断路器的参数设计和绝缘配合提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis on the Influence of Stray Inductance on Overvoltage of Hybrid DC Circuit Breaker During Breaking Process
DC circuit breakers are the key equipment in maintaining safe and reliable operation of DC system. The presence of stray inductance in each branch of the hybrid DC circuit breaker generates overvoltage due to a high rate of current rise during breaking operation, which brings negative effects to the flexibility and reliability of DC system. The objective of this paper is to investigate the influence of internal stray inductance on overvoltage when the hybrid DC circuit breaker operated. The stray inductance components of main branch, transfer branch and energy consumption branch in hybrid DC breaker were analyzed and the integrated inductance of the three branches were obtained. Based on PSCAD/EMTDC, a 500kV hybrid DC circuit breaker model was established. By changing the size of stray inductance in each branch, the influence rules of stray inductance on overvoltage of circuit breaker during the breaking process were simulated and studied. The results indicate that the increased stray inductance of main branch has no obvious effect on overvoltage of hybrid DC circuit breaker during breaking process. Whereas, for transfer branch, the increased stray inductance results in a decline on overvoltage, which is unfavorable to the establishment of the breaking voltage. And the increased stray inductance of energy consumption branch extends the energy consumption time. This paper provides references for parameter design and insulation coordination of hybrid DC circuit breaker.
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