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Optimal coordination of overcurrent relay using an enhanced discrete differential evolution algorithm in a distribution system with DG

机译:分布式配电系统中基于改进离散差分进化算法的过电流继电器最优协调

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Interconnecting a distributed generation (DG) to an existing distribution system causes an improved utilization of the local resources, prominently the renewable energy sources. Penetration of a DG into an existing distribution system has so many impacts on the system, despite the benefits a DG will provide; it has a negative impact on one of the most important aspects of the system, one of which is the power system protection. Installation of DG to the existing system will produce additional fault current which may disturb the previously coordinated relays and lead to miscoordination of overcurrent relays. In this paper, an enhanced discrete differential evolution is introduced to perform the overcurrent relay coordination required to protect the radial distribution network with distributed generators. The proposed DE generates quantized vectors and uses time varying scaling factors for enhanced operation. The case studies have been carried out to identify the effectiveness of the proposed algorithm. The results show that the optimized relay settings can improve the supply reliability especially in distributed generation cases.
机译:将分布式发电(DG)与现有的配电系统互连可以提高对本地资源(主要是可再生能源)的利用。尽管DG会带来好处,但将DG渗透到现有的分配系统中会对系统产生如此多的影响;它对系统最重要的方面之一具有负面影响,其中之一就是电力系统保护。将DG安装到现有系统上会产生额外的故障电流,这可能会干扰先前协调的继电器并导致过电流继电器的不协调。在本文中,引入了增强的离散差分演化,以执行保护分布式发电机径向分配网络所需的过流继电器协调。提出的DE生成量化矢量,并使用时变比例因子来增强操作。案例研究已经进行,以确认所提出算法的有效性。结果表明,优化的继电器设置可以提高供电可靠性,尤其是在分布式发电情况下。

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