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首页> 外文期刊>International journal of electrical power and energy systems >Optimum placement and sizing of DGs considering average hourly variations of load
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Optimum placement and sizing of DGs considering average hourly variations of load

机译:考虑负荷平均每小时变化的DG的最佳放置和尺寸

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摘要

This paper presents a multiobjective technique for obtaining optimal sizing of Distributed Generation (DG) units considering both technical and economical factors of the distribution system. The technical factors include real power loss reduction, line load reduction and voltage profile improvement and the economical factors consider optimal DG investment cost. Three different Distributed Generation systems solar photovoltaic, biomass and wind system are considered for integration with the existing distribution system. Since solar photovoltaic system is not available at night time, only biomass and wind systems are operated and for day time operation all the three distribution generation systems are considered. A new sensitivity index based on voltage sensitivity and apparent load power is proposed for identification of optimal locations for DG placement. The optimum sizing of DG units operating at unity power factor and lagging power factor is obtained using GA for different load levels considering daily average hourly loading aiming at improving the technical performance of the distribution system with optimum investment on DG units. Simulation results are presented to show the advantage of the proposed methodology in terms of technical performance and annual economical savings of the distribution system. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文提出了一种多目标技术,该技术可同时考虑配电系统的技术和经济因素,从而获得分布式发电(DG)机组的最佳尺寸。技术因素包括降低实际功率损耗,降低线路负载和改善电压曲线,而经济因素则考虑了最佳DG投资成本。考虑将三种不同的分布式发电系统太阳能光伏,生物质能和风能系统与现有的配电系统集成。由于太阳能光伏系统在夜间不可用,因此仅运行生物质和风能系统,而对于白天运行,则考虑所有三个配电系统。提出了一种基于电压灵敏度和视在负载功率的新灵敏度指标,用于确定DG放置的最佳位置。考虑到每日平均每小时负荷量,旨在提高配电系统的技术性能,同时对DG装置进行最佳投资,使用GA针对不同负荷水平,以GA为单位来获得以统一功率因数和滞后功率因数运行的DG装置的最佳尺寸。仿真结果表明了该方法在配电系统的技术性能和年度经济节省方面的优势。 (C)2014 Elsevier Ltd.保留所有权利。

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