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Mitigating the impact of distributed generation and fault current limiter on directional overcurrent relay coordination by adaptive protection scheme

机译:通过自适应保护方案减轻分布式生成和故障电流限制器对定向过电流中继协调的影响

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Overcurrent protection principle are mostly coordinated offline according to maximum load and fault currents on dominant topology. However, the traditional networks have been evolving gradually toward reliable and sustainable Smart Grid (SG) in which Distributed Generation (DG) (whether its coal based or renewable) is a vital component. Challenges have come along with advantages of DGs on protective relays such as coordination loss, which leads to several researching proposals to mitigate the impacts of DGs in modern networks. One of the many is the use of Fault Current Limiter (FCL) to lessen DG impacts, but since FCLs come with high cost to completely restore protective relay performance. Adaptive Protection Scheme (APS) exploiting the advance features of SG appear as an efficient solution to confront new challenges related to DGs and FCLs. The impacts of DGs and FCLs before and after employing APS are presented using the interconnected 6 bus system. Results have shown that APS can adequately integrate both DGs and FCLs with no adverse effects.
机译:过电流保护原理主要根据主拓扑的最大负荷和故障电流离线协调。然而,传统的网络已经逐渐发展朝着可靠和可持续的智能电网(SG),其中分布式发电(DG)(其煤基或可再生)是重要组成部分。挑战具有DGS对保护继电器(如协调亏损)的优势,这导致了几项研究提案,以减轻DGS在现代网络中的影响。其中一个是使用故障电流限制器(FCL)来减少DG影响,但由于FCLS具有高成本来完全恢复保护性继电器性能。利用SG的预先功能的自适应保护方案(AP)显示为有效的解决方案,以应对与DGS和FCLS相关的新挑战。使用互连的6总线系统提出了DGS和FCLS之前和之后的影响。结果表明,APS可以充分集成DGS和FCLS,没有不利影响。

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