Optimal DG placement and sizing based on MICP in radial distribution networks

M. Mousavi, A. Ranjbar, A. Safdarian
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引用次数: 3

Abstract

Electric distribution system is one of the most important parts of power systems owing to delivering electricity to consumers. The major amount of losses in a power system is in distribution level. Optimal distributed generation (DG) placement and sizing have a significant effect on power loss reduction in distribution systems. In this paper, a mixed integer conic programming (MICP) approach is presented to solve the problem of DG placement, sizing, and hourly generation with the aim of reducing power loss and costs in radial distribution systems. The costs include both investment and operational costs of DGs. Hourly load variations are considered in the model. To verify the effectiveness of the proposed solution approach, studies are carried out on the IEEE 33-bus distribution test system.
径向配电网中基于MICP的DG布局优化
配电系统是电力系统中最重要的组成部分之一,负责向用户输送电力。电力系统的主要损耗发生在配电级。分布式发电机组的优化布局和配置对降低配电系统的功率损耗具有重要的影响。本文提出了一种混合整数二次规划(MICP)方法,以降低径向配电系统的电力损耗和成本为目标,来解决DG的布局、大小和每小时发电的问题。成本包括DGs的投资成本和运营成本。模型中考虑了每小时负荷的变化。为了验证所提出的解决方法的有效性,在IEEE 33总线配电测试系统上进行了研究。
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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