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Research on a Novel DC Circuit Breaker Based on Artificial Current Zero-Crossing

机译:基于人工电流零交叉的新型直流断路器研究

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摘要

Modular multilevel converter-based high voltage direct-current (MMC-HVDC) transmission has developed rapidly because of its flexibility, reliability and efficiency. DC circuit breaker (DCCB) is one of the key equipments to ensure the safe and stable operation of MMC-HVDC power grids. In this paper, we investigate a novel topology of DC circuit breaker based on artificial current zero-crossing. The proposed DC circuit breaker can effectively limit the magnitude and rise rate of fault current at the converter station side and reduce the impact of DC fault on the converter devices. The principle and operation sequence of this topology are described. Meanwhile, the breaking process of the DC fault is analyzed theoretically and the considerations for parameter design are presented. Finally, the system model of DC circuit breaker and a four-terminal MMC-HVDC test system are built in PSCAD/EMTDC. The simulation results show that the proposed DC circuit breaker is effective for quick breaking after fault.
机译:基于模块化的多电平转换器的高压直流(MMC-HVDC)传输通过其灵活性,可靠性和效率而迅速发展。直流断路器(DCCB)是为确保MMC-HVDC电网安全稳定运行的关键设备之一。在本文中,我们研究了基于人工电流零交叉的DC断路器的新型拓扑。所提出的直流断路器可以有效地限制转换器站侧的故障电流的幅度和上升速率,并降低转换器装置上的直流故障的影响。描述了这种拓扑的原理和操作序列。同时,理论上分析了DC故障的断裂过程,并提出了参数设计的考虑。最后,在PSCAD / EMTDC中构建了DC断路器和四端MMC-HVDC测试系统的系统模型。仿真结果表明,所提出的直流断路器有效地在故障后快速打破。

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