Study on coordination of Coupling mechanical DC circuit breaker and fault current limiter

Jiazhu Xu, Qike Wang, Xiangjun Zeng
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Abstract

Aiming at the problems of high amplitude, fast rising speed and difficult fault clearing of DC side fault current in multi-terminal flexible DC transmission system with modular multilevel (MMC-MTDC), a strategy of cooperative coordination of resistive superconducting fault current limiter and coupling mechanical DC circuit breaker to limit fault current and isolate fault lines is proposed. Firstly, the topological structure and working principle of resistive superconducting fault current limiter and coupling mechanical DC circuit breaker are analyzed. Secondly, the principle of superconducting fault current limiter and coupling mechanical DC circuit breaker coordination is analyzed, and on this basis, the coordination timing sequence of superconducting fault current limiter and coupling mechanical DC circuit breaker is proposed. Furthermore, the proposed coordination strategy is verified based on the PSCAD/EMTDC platform. The simulation results show that the coordination timing sequence can isolate faults accurately and quickly, and improve the safety and stability of the MMC-MTDC system.
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耦合机械式直流断路器与故障限流器的协调研究
针对模块化多电平多端柔性直流输电系统(MMC-MTDC)直流侧故障电流幅值高、上升速度快、故障清除困难等问题,提出了电阻式超导故障限流器与耦合式机械直流断路器协同协调的故障限流隔离策略。首先,分析了电阻式超导故障限流器和耦合机械式直流断路器的拓扑结构和工作原理。其次,分析了超导故障限流器与耦合机械式直流断路器协调的原理,并在此基础上提出了超导故障限流器与耦合机械式直流断路器协调时序。并在PSCAD/EMTDC平台上对所提出的协调策略进行了验证。仿真结果表明,该协调时序能够准确、快速地隔离故障,提高MMC-MTDC系统的安全性和稳定性。
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