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Artificial immune system based approach for size and locationoptimization of distributed generation in distribution system

机译:基于人工免疫系统的分布系统分布式发电量优化方法

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摘要

An increase in the share of distributed generation (DG) in the global generation system is a direct indication of the development of available technologies. The extraction of natural energy resources and their use as DG has several advantages, such as the reduction in line losses, improved voltage profile and reliability, etc., but the incorrect installation of these power plants can also have some negative effects. The innovation in technology has motivated to extract the maximum benefit of natural energy resources. Due to this, the capacity and location of these energy resources should be carefully identified. The optimal placement of a distributed generation power plant, in the existing network, is analyzed in this article. The proposed methodology is inspired by the human immune system. In this methodology clonal selection principle of immune system is combined with particle swarm optimization. For checking the validity of the proposed method two test systems, IEEE 33-node radial distribution system and IEEE 14-node loop distribution system, are considered. Results show the validity of the proposed algorithm in radial as well as in loop distribution system.
机译:全球生成系统中分布式发电(DG)份额的增加是直接指示现有技术的开发。自然能源资源的提取及其作为DG的用途具有几个优点,例如减少线路损耗,改善电压曲线和可靠性等,但这些发电厂的不正确安装也可能具有一些负面影响。技术的创新有动力提取自然能源资源的最大利益。由此,应仔细识别这些能源资源的容量和位置。在本文中分析了现有网络中分布式发电厂的最佳放置。所提出的方法受人类免疫系统的启发。在这种方法中,免疫系统的克隆选择原理与粒子群优化相结合。为了检查所提出的方法两个测试系统的有效性,考虑IEEE 33节点径向分配系统和IEEE 14节点环路分配系统。结果显示径向以及环路分布系统中所提出的算法的有效性。

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