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Application of a novel approach of resistive-type superconducting fault current limiter with a fast protection system in multi-terminal direct current network

机译:电阻型超导故障电流限制器新方法在多终端直流网络中具有快速保护系统的应用

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The key obstacle in the realization of multiterminal high-voltage direct current (MTDC) grids is the lack of existing commercial protection that a device can withstand the DC fault. Although different HVDC circuit breaker technologies have been investigated and demonstrators tested by manufacturers, the innovation of such devices to ensure a reliable protection system has not been proven yet due to the maximum breaking capability limitation especially in MTDC grids. To this, a combination of superconducting fault current limiter (SFCL) technology with a fast DC circuit breaker could bring a solution to this bottleneck. In this work, a new application of an accurate model of resistive-type SFCL (rSFCL) considering both the electrical and thermal behaviors is proposed to work together with a proactive hybrid DC circuit breaker (PHCB) to fulfill the whole system protection. The viability of the proposed approach is verified under a worst DC fault case-scenario that imposed in a five-terminal MTDC meshed grid. The numerical analysis and simulations are carried out using (EMTP-rv) software, while the obtained results show how significantly the proposed rSFCL can reduce the fault current and enhance the breaking capability. Also, a positive interaction has been observed between the rSFCL and PHCB in terms of design sizing and operation performance.
机译:实现多星形高压直流(MTDC)网格中的关键障碍是缺乏设备可以承受DC故障的现有商业保护。虽然已经调查了不同的HVDC断路器技术和由制造商测试的示威者,但由于MTDC网格中的最大断裂能力限制,因此尚未证明此类设备的创新,以确保可靠的保护系统尚未得到证实。为此,具有快速直流断路器的超导故障电流限制器(SFCL)技术的组合可以为该瓶颈带来解决方案。在这项工作中,考虑到电气和热行为的精确模型的新应用是提出了电气和热行为的准确模型,与主动混合直流断路器(PHCB)一起使用,以满足整个系统保护。在施加在五个终端MTDC网格网格中的最差的DC故障情况下,验证了所提出的方法的可行性。使用(EMTP-RV)软件进行数值分析和仿真,而获得的结果表明,所提出的RSFCL有多显着降低故障电流并增强断裂能力。此外,在设计尺寸和操作性能方面,RSFCL和PHCB之间已经观察到阳性相互作用。

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