Optimal sizing and allocation of DGs for real power loss reduction and voltage profile improvement in radial L.V networks

Maher M. A. Al-Maghalseh, Sari Odeh, Aws Saleh
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引用次数: 3

Abstract

The power produced from renewable Distributed Generators (DGs) units close to load centers increases system reliability, reduces losses, improves voltage profile as well as reduces fossil fuel consumption, which reduces the harm done to the environment. Achieving such benefits requires the careful selection of DGs locations and size. In this paper, a method based on a novel analytical approach for optimal allocation (sizing and siting) of DGs with the aim of reducing the total real power loss subject to specific assigned constraints in the radial distribution network is introduced. A computational method has been utilized to identify the optimal candidate locations for DGs, where the optimal sizes of DG units at the identified locations are evaluated by optimizing the loss saving equations, as well as the voltage drop on feeder. The proposed method has been tested and validated on a radial feeder in the Bethlehem district in the Jerusalem Distribution Electricity Company (JDECO) concession area. The test system consists of seven nodes and eleven 0.4 KV-buses and feeds five household loads. It has been found that a significant loss saving, as well as voltage profile improvement can be obtained by the appropriate selection of size and location of the DG units within the tested system using the proposed analytical method. The design has been simulated and verified using the NEPLAN simulator.
径向低压电网中dg的优化尺寸和配置以降低实际功率损耗和改善电压分布
靠近负荷中心的可再生分布式发电机(dg)单元产生的电力提高了系统的可靠性,减少了损耗,改善了电压分布,减少了化石燃料的消耗,从而减少了对环境的危害。实现这些好处需要仔细选择dg的位置和大小。本文基于一种新的解析方法,提出了一种在给定约束条件下,以降低径向配电网实际总功率损耗为目标的dg优化配置(规模和选址)方法。采用一种计算方法来确定DG的最佳候选位置,其中通过优化损耗节约方程以及馈线电压降来评估所确定位置DG单元的最佳尺寸。该方法已在耶路撒冷配电公司(JDECO)特许区伯利恒地区的径向馈线上进行了测试和验证。测试系统由7个节点和11个0.4 kv总线组成,可满足5个家庭负载。已经发现,通过使用所提出的分析方法在测试系统中适当选择DG单元的尺寸和位置,可以显著节省损耗,并改善电压剖面。利用NEPLAN模拟器对该设计进行了仿真和验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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