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Coordinative performance of HVDC circuit breakers in MTDC grids

机译:MTDC网格中HVDC断路器的协调性能

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The objective of this paper is to investigate the coordinative performance of different types of high voltage DC (HVDC) circuit breakers (CBs) in multi-terminal DC (MTDC) grids. Several different HVDC CB technologies are emerging as a solution for the protection of offshore MTDC grids. There is a need for coordinative operation between different types of DC CBs in the same network. In this paper, two typical types of DC CBs are modelled in detail and implemented in a 4terminal MTDC grid in PSCAD environment, by considering operation time, interruption capability and interruption characteristics. Since the requirement of the DC CBs depends on the magnitude of the interrupted current where they are implemented, the fault scenarios in all terminals are studied and the worst scenarios are selected to demonstrate the coordinative performance of different DC CBs. Four cases are defined and demonstrated by two different types of CBs at each terminal of the cable. DC CBs perform differently with the change of the operating time and the locations where they are implemented. The performances and energy absorption are compared and analyzed. The obtained results can be used as DC CB’s selection optimization methodology for future MTDC grids.
机译:本文的目的是研究多终端DC(MTDC)网格中不同类型的高压DC(HVDC)断路器(CBS)的协调性能。几种不同的HVDC CB技术正在涌现为保护海上MTDC网格的解决方案。在同一网络中不同类型的DC CBS之间存在协调操作。在本文中,通过考虑操作时间,中断能力和中断特性,在PSCAD环境中在PSCAD环境中详细建模并在PSCAD环境中在4Terminal MTDC网格中进行了两种典型类型的DC CB。由于DC CBS的要求取决于实现它们的中断电流的幅度,因此研究了所有终端中的故障方案,并且选择了最糟糕的情况以展示不同DC CB的协调性能。在电缆的每个端子处通过两种不同类型的CBS定义和演示了四种情况。 DC CBS随着操作时间的变化和实现它们的位置而不同。比较和分析性能和能量吸收。获得的结果可用作DC CB的未来MTDC网格的选择优化方法。

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