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SF6 passive resonance DC circuit breaker combined with a superconducting fault current limiter

机译:SF6被动谐振直流断路器与超导故障电流限制器组合

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Superconducting current limiters (SFCLs) can limit short-circuit fault current and provide sufficient time for DC circuit breakers (DCCBs) to isolate faults. An SF(6)passive resonance DCCB combined with a superconducting current-limiting module and a DC interruption module is proposed due to the high current interruption properties and the low on-state loss. However, experimental investigations of SF(6)passive resonance DCCBs combined with SFCLs using DC source are currently lacking. The objective of this paper is to obtain the interruption characteristics and modeling design methods of the proposed SF(6)passive resonance DCCB. This paper designs a 10 kV SF(6)passive resonance DCCB and tests the DCCB in a 10 kV/10 kA circuit. Quenching resistance and arc models are established based on experimental results. Experimental results show that the superconducting current-limiting module responds fast at 0.3 ms and limits the DC fault current of 10 kA to a peak of 816 A. Then the DC interruption module interrupts the limited current successfully. Besides, there is no overvoltage afterward in all the tests because the superconducting current-limiting module absorbs much of the energy during the interruption. The proposed DCCB would be an effective method for interrupting short-circuit faults in high voltage DC systems.
机译:超导电流限制器(SFCLS)可以限制短路故障电流,并为直流断路器(DCCB)提供足够的时间来隔离故障。由于高电流中断特性和低导通状态损耗,提出了一种与超导电流限制模块和DC中断模块组合的SF(6)被动谐振DCCB。然而,目前缺乏使用DC源与SFCL结合的SF(6)被动共振DCCB的实验研究。本文的目的是获得所提出的SF(6)被动谐振DCCB的中断特性和建模设计方法。本文设计了10 kV SF(6)被动谐振DCCB,并在10 kV / 10 kA电路中测试DCCB。基于实验结果建立淬火电阻和弧模型。实验结果表明,超导电流限制模块在0.3ms时快速响应,并将10ka的直流滤波器限制为816A的峰值。然后,DC中断模块成功地中断了有限的电流。此外,在所有测试中,没有过压,因为超导电流限制模块在中断期间吸收大部分能量。所提出的DCCB是用于中断高压DC系统中的短路故障的有效方法。

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