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Multi-objective optimization of auto-tap-changer pole transformer considering optimum placement in distribution systems

机译:考虑分配系统最佳放置的自动分接开关磁极变压器的多目标优化

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This paper proposes the application of multi-objective optimization to tap changing transformers in a distribution system. Conventional electrical power systems do not consider reverse power flow, in which the power flows toward the power system in distribution systems. When large quantities of distributed generators (DGs) are introduced into a distribution system they can cause voltage deviations beyond the statutory range, and can reverse flow toward the substation transformer. Consequently, this cause faults in electricity devices and even lead to a massive blackout. This is an important issue within the distribution system. To resolve voltage deviation problems it is necessary to consider some trade-offs. However, there is not much research adapting multi-objective optimization for use in the distribution system. Therefore this paper provides a method of multi-objective optimization in order to minimize voltage deviation while simultaneously minimizing the number of introduced voltage control devices and finding an optimum placement of those voltage control devices. Moreover, an optimum scheduling of the distribution system is adopted.
机译:本文提出了多目标优化在分配系统中抽头变压器的应用。传统的电力系统不考虑反向电流,其中功率流向电力系统的分配系统。当将大量分布式发电机(DGS)引入分配系统时,它们会导致超出法定范围的电压偏差,并且可以向变电站变压器反转流动。因此,这导致电力设备的故障甚至导致大规模的停电。这是分销系统内的一个重要问题。解决电压偏差问题需要考虑一些权衡。但是,在配送系统中,还存在适应多目标优化的研究。因此,本文提供了一种多目标优化的方法,以便最小化电压偏差,同时最小化引入的电压控制装置的数量并找到那些电压控制装置的最佳放置。此外,采用了分配系统的最佳调度。

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