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Experimental Study of Single Core Configurations of Saturated Iron Core Fault Current Limiter

机译:饱和铁芯故障电流限制器单芯配置的实验研究

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摘要

The high growth in electrical power demand, the inception of distributed generation, and the interconnection of grid networks contributed to an increase in system fault current. At places in the world, it reached an extent where the protection from this detrimental short circuit current became highly challenging. The circuit breaker’s available capacities and interruption capacity requirements have no margins. Researchers across the world are following the development of enabling technology in terms of Fault Current Limiter(FCL). Saturated Core Fault Current Limiter (SCFCL) is the most commercially viable, cost-effective, reliable, and scalable FCL technology option that can enhance the service life of protective gears in the power networks. In this paper, the two single-core configurations of SCFCL viz. Double AC Winding Model(DWM) and Single AC Winding Model(SWM), have been experimentally explored to investigate and contrast their conduct. Though the peak short circuit current is observed to be clipped significantly by SWM, the voltage drop across the device under normal conditions for designated bias has been noted to be substantially high. The bias design requirement in the case of SWM as a current limiter is critical and subjected under the compulsive constraint of insertion voltage drop in the development of FCL.
机译:电力需求的高增长,分布式生成的初始化以及网格网络的互连导致系统故障电流的增加。在世界的地方,它达到了这种有害短路电流的保护变得非常具有挑战性。断路器可用的能力和中断容量要求没有边距。世界各地的研究人员正在遵循在故障电流限制器(FCL)方面启动技术。饱和磁芯断电器电流限制器(SCFCL)是最具商业上可行,性价比,可靠的和可扩展的FCL技术选择,可以增强电网中保护齿轮的使用寿命。在本文中,SCFCL viz的两个单核配置。 Double AC绕组模型(DWM)和单次交流绕组模型(SWM),已经通过实验探索,以调查和对比他们的行为。虽然观察到通过SWM显着地观察到峰值短路电流,但是在指定偏差的正常条件下,该装置的电压降已经指出基本上高。作为电流限制器的SWM的情况下的偏置设计要求是关键的并且在FCL开发中的插入电压降的强迫约束下进行。

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