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首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >An Evolutionary Approach for Optimum Reconfiguration and Distributed Generation Planning Considering Variable Load Pattern Based on Voltage Security Margin
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An Evolutionary Approach for Optimum Reconfiguration and Distributed Generation Planning Considering Variable Load Pattern Based on Voltage Security Margin

机译:基于电压安全裕度的可变负荷模式的最优重构与分布式发电计划优化进化方法

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摘要

A novel method to solve the problem of reconfiguration and distributed generation (DG) planning in distribution systems is proposed in this paper. By a multistage hieratical optimization problem, this problem has been modeled as a nonlinear and multi-objective optimization problem based on to improve power system voltage stability margin, investment cost, and reduce losses. As the first stage, the ability of developed harmony search is used to reach the best network configuration and DGs location under variable load patterns. This reconfiguration algorithm starts with a radial topology by a theoretical approach based on the Graph concept and Matroid theory. The presented approach is useful to avoid tedious mesh checks for the topology constraint validation. In the second stage of proposed approach, the voltage stability index is calculated to evaluate static voltage stability security margin. This calculation is done for each time variable reconfiguration pattern with defined DGs planning based on a developed toolbox which evaluate the loadability limit and other terms of task function. Finally, the simulations are carried out on 69 and 119 bus IEEE distribution systems and have been compared with particle swarm optimization. The results show good enhancement to reach the optimum solution with respect to the other studies.
机译:提出了一种解决配电系统重构和分布式发电(DG)规划问题的新方法。通过多级分层优化问题,已将此问题建模为非线性和多目标优化问题,其基础是提高电力系统的电压稳定性裕度,投资成本并减少损耗。作为第一阶段,已开发的和声搜索功能可用于在可变负载模式下达到最佳网络配置和DG位置。该重新配置算法通过基于图概念和Matroid理论的理论方法从径向拓扑开始。所提出的方法对于避免繁琐的网格检查以进行拓扑约束验证很有用。在提出的方法的第二阶段,计算电压稳定性指数以评估静态电压稳定性安全裕度。对于每个时间变量重配置模式,都使用已定义的DG规划来完成此计算,该DG规划基于已开发的工具箱来评估可负载性限制和任务功能的其他条件。最后,在69和119总线IEEE配电系统上进行了仿真,并与粒子群优化进行了比较。结果表明,相对于其他研究而言,获得了最佳解决方案的良好增强。

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