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Evaluation of Semiconductor Based Methods for Fault Isolation on High Voltage DC Grids

机译:基于半导体的高压直流电网故障隔离方法的评估

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This paper investigates methods for dc fault current fast interruption in high-power dc networks. A four terminal 1.2 GW dc transmission grid is used as a test system. The study compares four semiconductor-based devices for dc fault isolation: series hybrid dc breaker, half bridge and full bridge dc chopper, and LCL thyristor converter. The study considers performance of devices, costs and losses, and also application with larger dc grids. A hybrid dc CB has lowest losses, but the component sizing crucially depends on the speed of fault detection. It is demonstrated that fast communication between various devices in the dc grid is mandatory but might be very challenging. On the other hand, dc choppers and LCL converter component sizing is not dependent on the speed of protection, and there is no need for communication across dc grids. Additionally, they offer the capability of voltage stepping and dc cable power regulation. The LCL converter provides inherent fault current interruption and needs no overrating for dc faults. It also gives better efficiency compared to dc choppers. The performance of these dc breakers is demonstrated using detailed transient PSCAD simulation for dc faults.
机译:本文研究了大功率直流网络中直流故障电流快速中断的方法。一个四端子1.2 GW直流输电网络用作测试系统。该研究比较了四种用于直流故障隔离的基于半导体的器件:串联混合直流断路器,半桥和全桥斩波器以及LCL晶闸管转换器。该研究考虑了设备的性能,成本和损耗,以及大型直流电网的应用。混合直流CB具有最低的损耗,但是组件的大小关键取决于故障检测的速度。事实证明,直流电网中各种设备之间的快速通信是强制性的,但可能会非常具有挑战性。另一方面,直流斩波器和LCL转换器组件的大小不取决于保护速度,也不需要跨直流电网进行通信。此外,它们还提供电压步进和直流电缆功率调节功能。 LCL转换器可提供固有的故障电流中断功能,并且无需针对直流故障进行过高估。与直流斩波器相比,它还具有更好的效率。这些直流断路器的性能通过详细的直流故障瞬态PSCAD仿真得到了证明。

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