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Optimal Coordination of Ultrafast Solid-State Circuit Breakers in DC Microgrids

机译:直流微电网中超快固态断路器的最佳协调

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Solid state circuit breakers (SSCBs) present ultrafast response time in interrupting short circuit fault currents in DC systems. Coordination of SSCBs is presented in this paper to minimize the isolation time, enhancing the reliabity, and obtain selectivity. Inverse time current characteristics (ITCC) are considered to describe the time-current trip curves of SSCBs. Three operating profiles are included named as overload, short circuit, and instantaneous regimes. In overload profile, thermal capability of the SSCBs is considered in determining the tripping time; whereas, operating speed is the deciding factor in short circuit and instantaneous profiles. A coordination time interval (CTI) is applied between primary and backup SSCBs to provide selectivity without the need of any communication link. To verify the correctness of the protective scheme, a 400V grid-connected DC microgrid including ultrafast MOV-RCD based SSCBs is simulated in LTspice.
机译:固态断路器(SSCB)在直流系统中中断短路故障电流中的超快响应时间。 本文提出了SSCB的协调,以最小化分离时间,增强封件,并获得选择性。 逆时间特征(ITCC)被认为是描述SSCB的时间当前跳闸曲线。 三个操作简档包括为过载,短路和瞬时制度。 在过载轮廓中,在确定跳闸时间时考虑SSCB的热能; 虽然,操作速度是短路和瞬时配置文件的决定因素。 在主和备份SSCB之间应用协调时间间隔(CTI),以提供无需任何通信链路的选择性。 为了验证保护方案的正确性,在LTSPICE中模拟了一个400V电网连接的DC微电网,包括超快-RCD基于SSCB的SSCB。

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