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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >A new multi-gap spark switch connected with frequency-dependent network for EHV overvoltage protection applications
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A new multi-gap spark switch connected with frequency-dependent network for EHV overvoltage protection applications

机译:一种新型多间隙火花开关,与频率相关网络相连,用于超高压过压保护应用

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摘要

With the development of modern power systems, the overvoltage protection and high current fast bypass of important electric equipment or parts in EHV grids put forward a great demand for high reliable fast bypass techniques. The triggered spark gaps now used in H.V. grids are still confronted with many difficulties. This paper proposes a conceptual design of a new multi-gap spark switch connected with a frequency-dependent network. The device is composed of series gaps and a chain RC network for producing frequency-dependent voltage distribution along the gaps. An even voltage distribution under power frequency operating voltage while an extremely uneven voltage distribution under trigger impulse can be achieved by proper parameter setting. The even voltage distribution enables the multi-gap spark switch to withstand much higher voltage than that in operation, thus avoiding false firing. On the contrary, extremely uneven voltage distribution could initiate cascade discharge at low amplitude impulse, insuring reliable triggering. The working principle of the new multi-gap spark switch differs considerably from that of the current spark gaps in H.V. and pulsed power systems. It has high reliability and no dead zone of trigger control, which can be sufficiently used as a high speed bypass switch for overvoltage protection applications in EHV grids. The conceptual design of the multi-spark gap switch, simulation of the frequencydependent voltage distribution, cascade discharge of the spark gaps as well as the experimental performance verification on the prototype are presented in this paper.
机译:随着现代电力系统的发展,超高压电网中重要电气设备或零件的过压保护和大电流快速旁路对高可靠的快速旁路技术提出了很高的要求。 H.V.现在使用的触发火花隙电网仍然面临许多困难。本文提出了一种与频率相关的网络连接的新型多间隙火花开关的概念设计。该设备由串联间隙和链式RC网络组成,用于沿间隙产生频率相关的电压分布。通过适当的参数设置,可以在工频工作电压下获得均匀的电压分布,而在触发脉冲下获得极其不均匀的电压分布。均匀的电压分布使多间隙火花开关能够承受比工作电压高得多的电压,从而避免了误点火。相反,极不均匀的电压分布会在低振幅脉冲下启动级联放电,从而确保可靠的触发。新型多间隙火花开关的工作原理与H.V中的当前火花间隙有很大不同。和脉冲电源系统。它具有很高的可靠性,并且没有触发控制的死区,可以充分用作超高压电网中过压保护应用的高速旁路开关。本文介绍了多火花间隙开关的概念设计,频率相关电压分布的仿真,火花间隙的级联放电以及对原型的实验性能验证。

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