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Optimal siting and sizing of distributed generation using fuzzy-EP

机译:使用Fuzzy-EP的分布式发电最优选址和选型

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Distributed generation (DG) promises many potential benefits, including peak shaving, price hedging, fuel switching, improved power quality and reliability, increased efficiency and improved environmental performance. For these reasons, DG predicted to play an increasing role into the electric power systems of the near future. In this paper, two types of DGs are considered for implementation and DGs are modelled as PQ bus. The suitable location for placing distributed generation (DG) is identified through loss sensitivity factors and L index. The fuzzy adaptation of evolutionary programming has been chosen as it is particularly suited while solving optimization problems of multiobjectives. This technique is used to find the optimal size of distributed generation (DG). The objective of this paper is to minimize the total payments toward compensating for system losses and DG's capital costs by optimal siting and sizing of two types of DG. This new technique is tested on IEEE-34 bus radial distribution system and the results obtained justify the importance of optimal placement of distributed generation (DG) for minimizing losses and maximizing saving while maintaining appropriate voltage profile at all the buses.
机译:分布式发电(DG)有望带来许多潜在的好处,包括削峰,价格对冲,燃料转换,改善的电能质量和可靠性,提高的效率和改善的环境绩效。由于这些原因,DG预测在不久的将来将在电力系统中扮演越来越重要的角色。在本文中,考虑了两种类型的DG的实现方式,并将DG建模为PQ总线。通过损失敏感性因子和L指数确定放置分布式发电(DG)的合适位置。选择了进化规划的模糊适应方法,因为它特别适合解决多目标优化问题。此技术用于查找分布式发电(DG)的最佳大小。本文的目的是通过两种选型DG的最佳选址和选型来最大程度地减少用于补偿系统损失和DG的资本成本的总付款额。这项新技术已在IEEE-34总线径向分配系统上进行了测试,所获得的结果证明了最佳分配分布式发电(DG)的重要性,这对于最大程度地降低损耗和最大程度地节省成本,同时在所有总线上保持适当的电压分布是至关重要的。

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