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An approach to determine penetration level of Distributed Generation considering fuse fatigue issues in distribution radial feeders

机译:一种考虑分布式径向馈线中保险丝疲劳问题的确定分布式发电渗透水平的方法

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The use of Distributed Generation in distribution systems has many benefits but this systems initially has been built for simple one-way power delivery, interconnecting small generators requires new thinking and new methods for operating the network with new challenges. Small-scale generators located on the distribution level are generally referred to as distributed generation (DG). Notable among these challenges is the DG effects can have on overcurrent protection (OCP). In the previous studies completely mitigated the fuse misoperation and nuisance fuse blowing issues, but the fuse fatigue issues on the radial test feeder are not completely eliminated. Because fuse fatigue occurrence is an unavoidable event with presence of DGs, that's supposed to find an approach to minimize the OCP schemes change or determination size of DGs in radial feeders considering fuse fatigue issues. In this paper, "Imperiled Fuses" are introduced with a new algorithm and revisory decisions are presented. Then maximum size ofDG for installation at four specified locations is determined. The new approach is by using the IEEE 34 node radial test feeder. That was simulated in DIgSILENT Powerfactory version 14.520.
机译:在配电系统中使用分布式发电有很多好处,但是最初为简单的单向电力输送而构建该系统,将小型发电机互连需要新的思想和新的方法来使网络运营面临新的挑战。位于配电级的小型发电机通常称为分布式发电(DG)。这些挑战中值得注意的是,DG对过电流保护(OCP)可能产生影响。在先前的研究中,完全缓解了保险丝的误操作和令人讨厌的保险丝熔断问题,但并未完全消除径向测试馈线上的保险丝疲劳问题。由于存在DG时,发生保险丝疲劳是不可避免的事件,因此应该考虑到保险丝疲劳问题,找到一种方法来最小化径向馈线中OCP方案的变化或确定DG的尺寸。本文采用一种新算法介绍了“无名保险丝”,并提出了修订决策。然后确定在四个指定位置安装的DG的最大尺寸。新方法是使用IEEE 34节点径向测试馈线。在DIgSILENT Powerfactory版本14.520中进行了模拟。

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