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Optimal placement of distributed generations considering voltage stability and power losses with observing voltage-related constraints

机译:考虑电压稳定性和功率损耗并遵守电压相关约束条件的分布式发电系统的最优布置

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摘要

Distributed Generations (DCs) can be an efficient solution to today's power system environmental and economical challenges. Installing DGs influences power system stability and losses. In this paper, a method is presented for locating and sizing of DGs to enhance voltage stability and to reduce network losses simultaneously. First, vulnerable buses from voltage stability point of view are determined using bifurcation analysis as the best locations to install DGs. Number of DGs is so chosen that system voltage profile is brought into the given permissible voltage security limits. Then, the global optimal size of DGs is determined employing the dynamic programming search method. It is shown that considering DG reac-five limits makes different voltage stability bifurcations happen and it affects the optimal location, size, and number of DGs. Results of testing the proposed method and previous methods on a 34-bus distribution test system are discussed in detail and they show the efficiency of the proposed method.
机译:分布式发电(DC)可以有效解决当今电力系统的环境和经济挑战。安装DG会影响电力系统的稳定性和损耗。在本文中,提出了一种用于定位和确定DG的方法,以提高电压稳定性并同时减少网络损耗。首先,从电压稳定性的角度出发,使用分叉分析法将脆弱的母线确定为安装DG的最佳位置。选择DG的数量,以使系统电压曲线进入给定的允许电压安全限值。然后,使用动态规划搜索方法确定DG的全局最佳大小。结果表明,考虑DG的有效极限会导致不同的电压稳定性分叉,并影响DG的最佳位置,大小和数量。详细讨论了在34总线配电测试系统上测试该方法和先前方法的结果,这些结果表明了该方法的有效性。

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