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Integration of Proactive Hybrid Circuit Breaker with Current Flow Controller for Bipolar HVDC Grid

机译:用于双极HVDC电网的主动式混合断路器与电流控制器的集成

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A Voltage Source Converter based High Voltage Direct Current (VSC-HVDC) are the most efficient and reliable method for electrical power transmission and implementation of HVDC grids over long distances. Generally, a meshed HVDC transmission grid has major problems such as protection against dc faults and to manage the power flows between the lines. As Current Flow Controllers (CFCs) will be required to balance line currents between nodes in meshed-HVDC grids. Hybrid circuit breaker with forced commutation can interrupt the fault current and thus protect grids of HVDC from dc faults but the fault clearing time for the available dc breakers are not fast enough and reliable to provide adequate protection for dc faults on multiterminal networks. In order to overcome these problems CFCs is interline with hybrid dc circuit breaker. The CFC design and its control performance will be verified by MATLAB Simulink. The two cases are studied which include, an integrated system consisting of CFC with Circuit Breakers (CBs) and the separate design that includes CFC and CB separately that are compared and thus power losses can be reduced.
机译:基于电压源转换器的高压直流电(VSC-HVDC)是最有效,最可靠的方法,用于长距离输电和HVDC电网的实现。通常,网状HVDC输电网络存在重大问题,例如针对直流故障的保护以及管理线路之间的功率流。由于将需要电流控制器(CFC)来平衡网状HVDC网格中节点之间的线电流。具有强制换向功能的混合断路器可以中断故障电流,从而保护HVDC电网免受直流故障的影响,但是可用直流断路器的故障清除时间不够快且不够可靠,无法为多终端网络上的直流故障提供足够的保护。为了克服这些问题,CFC与混合直流断路器串联使用。 MATLAB Simulink将验证CFC设计及其控制性能。研究了这两种情况,包括一个由带断路器(CB)的CFC组成的集成系统,以及分别比较了CFC和CB的独立设计,从而可以降低功率损耗。

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