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首页> 外文期刊>International journal of electrical power and energy systems >Studies on the combination of RSFCLs and DCCBs in MMC-MTDC system protection
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Studies on the combination of RSFCLs and DCCBs in MMC-MTDC system protection

机译:关于MMC-MTDC系统保护中RSFCLS和DCCB的组合研究

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摘要

The high rate of rise and large amplitude of a dc fault current in MMC-MTDC system make its interruption difficult for DC Circuit Breakers (DCCBs). In order to tackle this issue, this paper proposes a combined operation of a Resistive-type Superconducting Fault Current Limiter (RSFCL) and a DCCB. By analyzing the fault current in a symmetrical monopole MMC-MTDC system, the effectiveness and necessity of adding a resistive type fault current limiting device into the system after fault is established. With detailed modeling of the RSFCL and DCCB including the quench and recovery processes of the RSFCL, their combined operation is investigated. The influence of different parameters, such as the maximum quench resistance of the RSFCL, the insertion time of the energy absorption branch in the DCCB, and the quench and recovery process of RSFCL, on the fault clearing process are investigated in detail. The effectiveness of the combined operation is verified by extensive simulations in PSCAD/EMTDC. The results indicate that the combination of RSFCLs and DCCBs can obtain a suppression rate of at least 25% on the peak value of the fault current. Besides, the energy that DCCBs need to absorb in their arresters has been reduced by more than 60%, and the total fault clearing time is also reduced. Furthermore, all the converters remain unblocked, making the fast recovery of MMC-MTDC system possible through DCCBs reclosing. It is concluded that the combination of RSFCLs and DCCBs provides an effective solution to handle short circuit faults in MMC-MTDC systems.
机译:MMC-MTDC系统中的直流故障电流的高速度和大幅度使其中断DC断路器(DCCB)难以。为了解决这个问题,本文提出了电阻型超导故障电流限制器(RSFCL)和DCCB的组合操作。通过分析对称单极MMC-MTDC系统中的故障电流,建立了故障后将电阻式故障电流限制装置添加到系统中的有效性和必要性。通过RSFCL和DCCB的详细建模,包括RSFCL的淬火和恢复过程,调查了它们的组合操作。研究了不同参数的影响,例如RSFCL的最大淬火电阻,DCCB中的能量吸收分支的插入时间,以及RSFCL的淬火和恢复过程,在故障清除过程中进行了影响。通过PSCAD / EMTDC的广泛模拟验证了组合操作的有效性。结果表明,RSFCLS和DCCB的组合可以在故障电流的峰值上获得至少25%的抑制率。此外,DCCBS需要在其避雷器中吸收的能量已经减少了60%以上,并且总故障清算时间也降低。此外,所有转换器都仍然是未阻止的,通过DCCB重新填充,可以快速恢复MMC-MTDC系统。得出结论,RSFCLS和DCCB的组合提供了一种有效的解决方案来处理MMC-MTDC系统中的短路故障。

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