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Development of a Novel HVdc Circuit Breaker Combining Liquid Metal Load Commutation Switch and Two-Stage Commutation Circuit

机译:新型HVDC断路器的开发结合液态金属负载换向开关和两级换向电路

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摘要

The emerging demand on development of high-voltage direct current (HVdc) networks brings about an increasingly urgent need for a fast and reliable HVdc circuit breaker. This paper proposes a novel topology of HVdc circuit breaker combining a liquid metal load commutation switch and a two-stage commutation circuit, which offers an effective solution for isolating faults while preserving larger current breaking capability and lower overvoltage rate of rise. With the topology optimized in terms of circuit parameters for determining their optimum design values, the handling of short-circuit faults for the proposed circuit breaker in HVdc application is predicted theoretically. Finally, preliminary tests from a developed low-power prototype are presented together with a comparative simulation study provided to verify the performance of the proposed HVdc circuit breaker.
机译:高压直流(HVDC)网络开发的新兴需求为快速可靠的HVDC断路器带来了越来越迫切的需求。本文提出了一种新颖的HVDC断路器拓扑结构,将液态金属负载换向开关和两级换向电路组合,该电路提供了一种有效的解决方案,用于隔离故障,同时保持更大的电流断开能力和较低的过电压升高率。通过在电路参数方面优化的拓扑,用于确定其最佳设计值,在理论上预测了HVDC应用中所提出的断路器的短路故障的处理。最后,从开发的低功耗原型的初步测试与提供的比较仿真研究一起呈现,以验证所提出的HVDC断路器的性能。

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