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A Probabilistic Approach for Power Loss Minimization in Distribution Systems

机译:配电系统功率损耗最小化的概率方法

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The number of Wind Power Distributed Generators are increasingly integrated in power systems because of having environmentally friendly and technically sound characteristics. It is prevalent that the non-optimal size and placement of Distributed Generation (DGs) can cause high power loss and unexpected voltage profile variation on feeder. This research study focusses on the probabilistic approach to design of Distributed Generation (DGs) and its impact on medium voltage (MV) feeders. Monte Carlo simulation based probabilistic power flow considering stochastic nature of wind and solar power generation and uncertainty of load variation are employed. The proposed method is simple that used open source MATLAB software including MATPOWER tools to analyse and design low voltage and medium voltage feeder. This method can furnish several choices to utilities/owners to place WT-DGs and PV-DGs at different suitable nodes. The method will be tested on different case study using Indian practical 22-bus and IEEE 69-bus network and the effect of DGs on the system voltage profile and loss are investigated accordingly.
机译:由于具有环保和技术上合理的特性,越来越多的风力分布式发电机被集成到电力系统中。普遍存在的问题是,分布式发电(DG)的非最佳尺寸和位置会导致高功率损耗以及馈线上意外的电压分布变化。这项研究的重点是分布式设计(DGs)的概率方法及其对中压(MV)馈线的影响。考虑了风力和太阳能发电的随机性以及负荷变化的不确定性,采用了基于蒙特卡罗模拟的概率潮流。所提出的方法很简单,它使用包括MATPOWER工具的开源MATLAB软件来分析和设计低压和中压馈线。该方法可以为公用事业/所有者提供多种选择,以将WT-DG和PV-DG放置在不同的合适节点上。该方法将在使用印度实用的22总线和IEEE 69总线网络的不同案例研究中进行测试,并据此研究DG对系统电压曲线和损耗的影响。

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