首页> 外文期刊>International Journal of Engineering Science and Technology >A GA/IPSO BASED APPROACH FOR SYSTEM LOSS REDUCTION AND VOLTAGE PROFILE IMPROVEMENT EMPLOYING ARITHMETIC CROSSOVER AND MUTATION.
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A GA/IPSO BASED APPROACH FOR SYSTEM LOSS REDUCTION AND VOLTAGE PROFILE IMPROVEMENT EMPLOYING ARITHMETIC CROSSOVER AND MUTATION.

机译:一种基于GA / IPSO的方法,采用算术交叉和可变的方法来减少系统损耗和改善电压曲线。

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摘要

Reduction of system losses and improvement of voltage profile is one of the key aspects in power system operation. Though many methods are used to achieve this aspect, Distributed Generation (DG) has found increased usage nowadays due to its many advantages. Majority of algorithms proposed in this area have emphasized on real power losses only in their formulations. In modern practical power systems reactive power injection plays a critical role in voltage stability control, thus the reactive power losses need to be incorporated in optimizing DG allocation for voltage profile improvement. This paper aims at solving this problem by proposing a hybrid of GA and IPSO to optimize DG location and size while considering both real and reactive power losses. The hybrid technique aims at inheriting the good traits from the two techniques while avoiding the undesirable ones. Arithmetic crossover and mutation has being employed in the proposed algorithm.
机译:减少系统损耗和改善电压曲线是电力系统运行的关键方面之一。尽管使用了许多方法来实现此方面,但是分布式发电(DG)如今由于其许多优点而得到了越来越多的使用。在该领域中提出的大多数算法仅在其公式中强调了有功功率损耗。在现代实际的电力系统中,无功注入在电压稳定性控制中起着至关重要的作用,因此,无功损耗必须纳入优化DG分配以改善电压分布。本文旨在通过提出GA和IPSO的混合体来解决此问题,以优化DG的位置和大小,同时考虑有功和无功损耗。混合技术旨在从两种技术中继承优良特性,同时避免不良特性。所提出的算法已采用算术交叉和变异。

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