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Simulation and analysis on the interruption process of HVDC vacuum switch with forced current zero

机译:强制电流零的HVDC真空开关中断过程的仿真分析

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With the fast development of multi-terminal high-voltage direct-current (HVDC) transmission system, a fast HVDC interruption technique is urgently demanded to break the short circuit current in the multi-terminal HVDC transmission system with a rapid rising rate. In this paper, an interruption scheme for HVDC based on vacuum switch and artificial current zero technique is proposed. The modularized main circuit breaker is composed of multiple modules in series, each module consists of a vacuum circuit breaker with fast operation mechanism, a RC snubber branch, and a metal oxide arrester. A triggered sphere gap is adopted for the commutation switch to achieve the bi-directional interruption. A backup circuit breaker is used to interrupt the residual current flowing in the circuit caused by the weak arc extinguishing capacity of the sphere gap. The interruption scheme is modeled and simulated. The current commutation process is analyzed.
机译:随着多终端高压直流(HVDC)传输系统的快速发展,迫切需要快速HVDC中断技术,以便快速上升的多终端HVDC传输系统中的短路电流。本文提出了一种基于真空开关和人工电流零技术的HVDC中断方案。模块化主断路器由多个模块串联组成,每个模块由具有快速操作机构的真空断路器,RC缓冲分支和金属氧化物避雷器组成。换向开关采用触发的球形间隙以实现双向中断。备用断路器用于中断由球形间隙的弱弧形灭火容量引起的电路中流动的剩余电流。中断方案是建模和模拟的。分析了当前的换向过程。

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