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首页> 外文期刊>International journal of electrical power and energy systems >Strategic approach for reinforcement of intermittent renewable energy sources and capacitor bank for sustainable electric power distribution system
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Strategic approach for reinforcement of intermittent renewable energy sources and capacitor bank for sustainable electric power distribution system

机译:增强间歇性可再生能源和电容器组以实现可持续配电系统的战略方法

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摘要

To meet ever increasing load demand in a sustainable way, reinforcement of photovoltaic (PV) array, wind turbine (WT) and capacitor bank in distribution network is proposed in this paper. A comprehensive planning model is presented to determine location and required installation capacity of multiple PV array, WT and capacitor units in an electric power distribution network under heavy load growth situation. Intermittent power generation of renewable energy sources (RESs) are quantified with suitable probability distribution functions and incorporated in the planning model. The planning approach considers several welfare areas in the distribution systems, viz., increment of profit margin, reduction of carbon-di-oxide emission, minimization of distribution power losses, enhancement of voltage stability level and improvement of the network security considering power flow, voltage limit, line capacity, RES penetration, capacitor penetration and utility economy constraint. Non-dominated sorting based multi-objective particle swarm optimization algorithm along with fuzzy decision making criteria is used to find the best allocation alternative for mix RES and capacitor planning problem. The effectiveness of the proposed model has been tested on a typical 28-bus Indian rural distribution network. The results show that more efficient techno-eco-environmental optimization can be obtained from combined RES and capacitor planning model. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了以可持续的方式满足不断增长的负荷需求,本文提出了在配电网中加强光伏阵列,风力涡轮机和电容器组的方案。提出了一种综合规划模型,以确定在重负荷增长情况下配电网络中多个PV阵列,WT和电容器单元的位置和所需的安装容量。使用适当的概率分布函数对可再生能源(RES)的间歇性发电进行量化,并将其纳入规划模型。该规划方法考虑了配电系统中的几个福利领域,即利润率的增加,二氧化碳排放量的减少,配电功率损耗的最小化,电压稳定水平的提高以及考虑潮流的网络安全性的提高,电压限制,线路容量,RES渗透,电容器渗透和公用事业经济约束。基于非支配排序的多目标粒子群算法与模糊决策标准一起用于寻找混合RES和电容器规划问题的最佳分配方案。该模型的有效性已在典型的28辆巴士印度农村配电网络上进行了测试。结果表明,结合RES和电容器规划模型可以得到更有效的技术生态环境优化。 (C)2016 Elsevier Ltd.保留所有权利。

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