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Short-circuit fault current-limiting characteristics of a resistive-type superconducting fault current limiter in DC grids

机译:直流电网电阻式超导故障限流器的短路故障电流限制特性

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Resistive-type superconducting fault current limiters (R-SFCLs) can limit short-circuit fault current and help DC circuit breakers (DCCBs) to isolate short-circuit faults in medium voltage and high voltage DC (HVDC) systems. SFCLs are always used with circuit breakers to break short-circuit current in power systems. The interruption characteristics of the DCCBs influence the current-limiting characteristics of the SFCLs. However, there has been a lack of investigation into the current-limiting and interruption characteristics when R-SFCLs are combined with mechanical-type DCCBs (M-DCCBs) based on the self-excited oscillation interruption principle in medium voltage and HVDC systems. The objective of this paper is to obtain the short-circuit fault current-limiting characteristics of a designed R-SFCL combined with an M-DCCB in DC grids. This paper describes the design of a 10 kV DC R-SFCL which was tested in combination with an M-DCCB in a DC circuit in order to obtain the quenched resistance and the required current interruption characteristics. Besides, a modular multilevel converter-based multi-terminal direct current (MMC-MTDC) grid was used to investigate the current-limiting and interrupting characteristics of the R-SFCL and the M-DCCB in a realistic HVDC grid. The experimental results show that in the 10 kV DC circuit the R-SFCL combined with the M-DCCB limited a 10 kA DC to the peak value of 1416 A and then interrupted this limited current successfully. And unlike other methods of DC interruption, this did not create overvoltage after interruption. The highest voltage on the R-SFCL is the system voltage during interruption. This means that the R-SFCL can effectively delay the voltage drop in MMC-MTDC grids, and provide enough time for the M-DCCB to interrupt the limited current. Thus, a combination of R-SFCLs and M-DCCBs might be an effective and reliable method to interrupt short-circuit fault currents in medium voltage and HVDC grids.
机译:电阻式超导故障电流限制器(R-SFCLS)可以限制短路故障电流并帮助DC断路器(DCCB)隔离中电压和高压DC(HVDC)系统中的短路故障。 SFCLS始终与断路器一起使用以打破电力系统中的短路电流。 DCCB的中断特性影响了SFCLS的电流限制特性。然而,当R-SFCLS基于中电压和HVDC系统中的自激振荡中断原理与机械式DCCB(M-DCCB)与机械式DCCB(M-DCCB)结合时,缺乏调查。本文的目的是通过DC网格中的M-DCCB获得设计的R-SFCL的短路故障电流限制特性。本文介绍了10KV DC R-SFCL的设计,其与DC电路中的M-DCCB组合测试,以获得淬火电阻和所需的电流中断特性。此外,使用模块化多级转换器的多端直线直流(MMC-MTDC)网格来研究R-SFCL和M-DCCB在现实HVDC网格中的电流限制和中断特性。实验结果表明,在10kV DC电路中,R-SFCL与M-DCCB合并为10ka dc的峰值为1416a,然后成功地中断该有限电流。与其他DC中断的其他方法不同,这在中断后不会产生过压。 R-SFCL上的最高电压是中断期间的系统电压。这意味着R-SFCL可以有效地延迟MMC-MTDC网格中的电压降,并为M-DCCB提供足够的时间来中断限制电流。因此,R-SFCLS和M-DCCB的组合可以是用于中压和HVDC网格中断短路故障电流的有效且可靠的方法。

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