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A Coupled Inductor Based Hybrid Circuit Breaker Topology for Subsea HVDC Transmission Systems

机译:海底高压直流输电系统的基于耦合电感的混合断路器拓扑

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Reliability of a typical DC power system largely dependent on the fault interruption capability of the switchgear. In AC power system, steady-state fault current incurs natural zero crossing which is not available for fault in a DC system. Instead, in DC systems, the fault current increases from its steady state value rapidly, the rate of rise of fault current is being decided by the lumped value of network inductance. Hence, fault interruption time for HVDC circuit breaker should be minimal in order to immediately isolate the faulty section and prevent any damage to the DC grid. Fast fault interruption is achieved by employing solid state circuit breakers (SSCB). However, substantially large power loss due to higher on-state voltage drop of the semiconductor devices limits the application of SSCBs. Hybrid circuit breakers combining the features of mechanical breakers and SSCB have shown better performance in terms of efficiency but de-magnetization of network inductance during voltage blocking state of mechanical breaker remains a pivotal challenge. This paper presents two coupled inductor based hybrid HVDC circuit breaker topologies to address the above mentioned problems of DC switchgears. The coupled inductor and capacitor are designed to form a resonant circuit during the fault to provide an artificial zero crossing of fault current. The added advantage of the proposed topologies is that, they do not require external charging circuitry to pre-charge the capacitor, and also eliminate the requirement of surge arrester which are employed for suppressing the energy stored in the network inductance during fault. Analysis and design of the proposed circuit breaker topologies are presented along with corresponding simulation results.
机译:典型直流电源系统的可靠性在很大程度上取决于开关柜的故障中断能力。在交流电源系统中,稳态故障电流会产生自然的过零现象,这对于直流系统中的故障是不可用的。相反,在直流系统中,故障电流从其稳态值迅速增加,故障电流的上升速率由网络电感的集总值决定。因此,HVDC断路器的故障中断时间应最短,以便立即隔离故障部分并防止对直流电网造成任何损坏。通过使用固态断路器(SSCB)可以实现快速的故障中断。然而,由于半导体器件的较高的通态电压降而导致的大的功率损耗限制了SSCB的应用。混合式断路器结合了机械式断路器和SSCB的特性,在效率方面表现出更好的性能,但是在机械式断路器的电压闭锁状态下网络电感的消磁仍然是一个关键性的挑战。本文提出了两种基于耦合电感器的混合HVDC断路器拓扑,以解决上述DC开关设备的问题。耦合的电感器和电容器设计为在故障期间形成谐振电路,以提供人为的故障电流过零。所提出的拓扑的附加优点在于,它们不需要外部充电电路即可对电容器进行预充电,并且消除了电涌放电器的需求,该电涌放电器用于抑制故障期间存储在网络电感中的能量。提出了所建议的断路器拓扑的分析和设计以及相应的仿真结果。

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