Recloser-fuse Coordination of Radial Distribution Systems with Different Technologies of Distributed Generation

M. Aly, Hammad Mahrous, M. M. Mahmoud
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引用次数: 2

Abstract

This paper discusses the effects of distribution generation (DG) on the recloser-fuse coordination of radial distribution systems. These effects are considered one of the disadvantages of connecting DGs with distribution systems and depend on the technology, location and size of DGs. Three different locations of DGs are studied: firstly, when the DG is located between the recloser and fuse, secondly, when the DG is located upstream of recloser and fuse, and thirdly, when the DG is located downstream of recloser and fuse. In every location the technology and size of the DG is varied and the penetration level at which the coordination is lost is recorded. The different studied technologies of the DGs are photovoltaic (PV), wind turbine of squirrel cage induction generator (Type 1) and wind turbine of synchronous generator (Type 4). The studied system is a radial distribution system consisting of 14 buses with main feeder and two laterals. All simulations are performed using ETAP 12.6.0 package. The results show that the recloser-fuse coordination may be lost as the size of DG increases, the worst location is when the DG is connected downstream to the recloser and fuse, and the worst DG technology is the Type 4 wind turbine.
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不同分布式发电技术下径向配电系统的合闸-熔断器协调
本文讨论了配电电源(DG)对径向配电系统重合闸-熔断器协调的影响。这些影响被认为是将dg与配电系统连接的缺点之一,取决于dg的技术、位置和大小。研究了DG的三种不同位置:一是DG位于重合闸和保险丝之间时,二是DG位于重合闸和保险丝上游时,三是DG位于重合闸和保险丝下游时。在每个地点,DG的技术和大小各不相同,并且记录了失去协调的渗透水平。dg的不同研究技术分别为光伏发电(PV)、鼠笼式感应发电机风力发电(1型)和同步发电机风力发电(4型)。所研究的系统是由14条母线组成的径向配电系统,有主馈线和两条支线。所有模拟均使用ETAP 12.6.0软件包进行。结果表明:随着DG尺寸的增大,重合闸与熔断器的配合可能会丧失,最糟糕的位置是DG连接在重合闸和熔断器的下游,最糟糕的DG技术是4型风力机。
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