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Protection scheme for flexible DC distribution grids based on a full-bridge modular multilevel conductor

机译:基于全桥模块化多电平导体的柔性直流配电网保护方案

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At present, it is still difficult to realize arc-extinguishing of large DC currents for DC breakers. A converter with fault self-cleaning capability can cut off the fault current quickly without DC breakers, which provides a new direction for research on protection of flexible DC grids. This article proposes a protection scheme for flexible DC distribution grids based on a full-bridge modular multilevel converter (MMC). The discrete wavelet transform is used to extract the maximum modulus of the fault current traveling wave. The fault can be determined by comparing the polarities of the maximum modulus of the fault current waveform obtained at the two ends of the DC line. A startup criterion is designed to avoid the interference of an out-of-zone fault, which increases the reliability of protection. The simulation results in PSCAD/EMTDC verify the proposed protection scheme, which can be adopted in flexible DC distribution grids.
机译:目前,仍然难以实现DC断路器的大型直流电流的灭弧。具有故障自清洁能力的转换器可以快速切断故障电流,没有直流断路器,为灵活直流网格的保护提供了新的方向。本文提出了一种基于全桥模块化多电平转换器(MMC)的灵活直流分布网的保护方案。离散小波变换用于提取故障电流行波的最大模量。通过比较在DC线的两端获得的故障电流波形的最大模量的极性来确定故障。启动标准旨在避免间隔故障的干扰,这增加了保护的可靠性。 PSCAD / EMTDC中的仿真结果验证了所提出的保护方案,可在柔性直流配电网中采用。

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