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Optimal coordination of overcurrent protection in the presence of SFCL and distributed generation

机译:SFCL和分布式发电环境下过电流保护的最佳协调

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Optimal coordination of overcurrent protection in the presence of SFCL and distributed generation Authors: SAEED ASGHARIGOVAR, HERESH SEYEDI, SHAHRAM PARCHEHBAF DIBAZARI Abstract: As power demand is increased, power generation and especially distributed generation (DG) are being developed. Therefore, power distribution systems become increasingly complicated and short circuit level in distribution grids is being augmented. Thereby, installation of a superconducting fault current limiter (SFCL) is a logical solution to decrease the fault current level in a distribution network. Preventing distribution system degradation by high fault currents, lower equipment ratings, and economic issues are the advantages of SFCL in distribution grids. However, SFCL installation causes delayed operation of the existing overcurrent protection and requires recoordination of the relays. In addition, disconnecting the SFCL from the distribution circuit due to maintenance leads to miscoordination between the overcurrent relays. In this research work, a genetic algorithm (GA) is used to achieve optimal protection coordination in the presence of both SFCL and DG. Furthermore, the uncertainty associated with the connection status of SFCL and DGs, which are reflected in the protection coordination, is investigated in detail. Moreover, various overcurrent relay characteristics, such as long-time inverse, extremely inverse, very inverse, and normally inverse, are used in a test power system, and remarkable computation results will be shown and discussed in the next parts of the paper. Keywords: Distributed generation (DG), distribution network, genetic algorithm (GA), optimal coordination, overcurrent protection, superconducting fault current limiter (SFCL) Full Text: PDF.
机译:在SFCL和分布式发电的情况下,过电流保护的最佳协调作者:SAEED ASGHARIGOVAR,HERESH SEYEDI,SHAHRAM PARCHEHBAF DIBAZARI摘要:随着电力需求的增加,发电特别是分布式发电(DG)正在开发中。因此,配电系统变得越来越复杂,并且配电网中的短路水平正在增加。因此,安装超导故障电流限制器(SFCL)是降低配电网络中故障电流水平的合理解决方案。 SFCL在配电网中的优点是可以防止由于高故障电流,较低的设备额定值以及经济问题而导致的配电系统降级。但是,SFCL的安装会导致现有过流保护功能的延迟运行,并且需要对继电器进行协调。此外,由于维护原因将SFCL与配电电路断开连接会导致过流继电器之间的协调不良。在这项研究工作中,遗传算法(GA)用于在SFCL和DG均存在的情况下实现最佳保护协调。此外,详细研究了保护协调中反映的与SFCL和DG的连接状态相关的不确定性。此外,在测试电源系统中使用了各种过电流继电器特性,例如长时间反时限,极反时限,极反时限和正常反时限,在下一部分中将显示并讨论显着的计算结果。关键字:分布式发电(DG),配电网络,遗传算法(GA),最优协调,过电流保护,超导故障限流器(SFCL)全文:PDF。

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