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Investigation of Suppression Effect of Short-Circuit Current and Voltage Drop in Multi-Terminal HVDC by DC Reactor

机译:DC反应器多端HVDC短路电流和电压降的抑制效应研究

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An HVDC grid will be required to avoid DC voltage collapse and operate the healthy lines continuously, even if a DC fault occurs at the remote end. Rapid fault clearing is essential for DC Circuit Breaker (DCCB) even though the requirement varies depending on DC transmission system configurations, Voltage Source Converter (VSC) design, transmission capacity, and DC reactor connected in series with the line/cable, etc. In this paper, the requirements for DCCB are analytically evaluated using a four-terminal radial HVDC network model. In addition, the method to mitigate each DCCB requirement is also investigated. The results show that DC fault interruption current and fault clearing time are achievable by using a mechanical DCCB with the active resonance current zero creation scheme by applying DC reactor at a proper value.
机译:即使在远程端发生在远端发生直流故障,将需要HVDC网格避免直流电压塌陷并连续操作健康的线路。快速故障清除对于直流断路器(DCCB)至关重要,即使要求因直流传输系统配置而变化,电压源转换器(VSC)设计,传输容量和直流电抗器与线/电缆等串联连接。本文使用四端子径向HVDC网络模型分析评估了DCCB的要求。此外,还研究了减轻每个DCCB要求的方法。结果表明,通过在适当值下应用DC反应器,可以通过使用机械DCCB使用机械DCCB来实现DC故障中断电流和故障清除时间。

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