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Research on fast solid state DC breaker based on a natural current zero-crossing point

机译:基于自然电流过零点的快速固态直流断路器的研究

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The DC fault characteristics of voltage source converter based high voltage direct current (VSC-HVDC) systems are analyzed in this paper. The phenomenon whereby the capacitor on DC side discharges quickly during a DC fault contributes to a large short-circuit fault current. Neither traditional DC breakers nor DC switches can cut off the fault current under this condition. A fast solid state DC breaker design method is proposed in this paper. This method is based on the fault current characteristics of the inverter in multi-terminal HVDC systems (MTDC), where a fault current appears at the natural zero-crossing point near the inverter. At this point, by coordinating the AC breakers near the rectifier, the DC breaker could reliably cut off the DC fault current and protect the system. A detailed model for this fast solid state DC breaker and its operation sequence are studied, based on this design method. Simulations modeling a five-terminal meshed DC grid and a fast DC breaker were carried out with PSCAD/EMTDC using this design method. The results from the simulations confirmed the validity of the design method.
机译:本文分析了基于电压源换流器的高压直流(VSC-HVDC)系统的直流故障特性。直流故障期间直流侧电容器快速放电的现象会导致较大的短路故障电流。在这种情况下,传统的直流断路器和直流开关都无法切断故障电流。提出了一种快速固态直流断路器的设计方法。该方法基于多端HVDC系统(MTDC)中逆变器的故障电流特性,其中故障电流出现在逆变器附近的自然过零点处。此时,通过协调整流器附近的交流断路器,直流断路器可以可靠地切断直流故障电流并保护系统。基于这种设计方法,研究了该快速固态直流断路器的详细模型及其操作顺序。使用这种设计方法,使用PSCAD / EMTDC对5端子网状DC电网和快速DC断路器进行了建模。仿真结果证实了该设计方法的有效性。

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