Analytical method of determining conditions for full compensation of reactive power in the power supply system

V. Yagup, K. Yagup
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Abstract

Goal. The purpose of the article is the development of an analytical method for determining the conditions for achieving full compensation in the generalized power supply system based on the use of substitute circuits, which are obtained using equivalent transformations of the topology of the original circuit. Methodology. The article proposes a methodology for replacing series reactive power compensation in high-voltage paths of the power supply system with parallel reactive power compensation in a low-voltage load node. Results. An algorithm for successive transformations of the power supply circuit has been developed, which makes it possible to estimate the values of the capacitances of compensating capacitors, at which full compensation of reactive power in the system is achieved. Originality. The proposed analytical method for calculating the parameters of the compensation unit makes it possible to dispense with complex optimization computer methods and makes it possible to estimate the compensation capacities that fall on the share of the load and the network. Practical value. The proposed technique allows, using a simple algorithm, to determine with high accuracy the necessary parameters of the compensating device, which provide the optimal mode in the power supply system. The proposed algorithm can easily be implemented in a microcontroller system for automatic control of the modes of the power supply system.
确定供电系统无功功率全补偿条件的分析方法
目标。文章的目的是开发一种分析方法,用于确定在使用替代电路的基础上实现通用供电系统完全补偿的条件,这些替代电路是通过对原始电路拓扑结构进行等效变换获得的。方法。文章提出了用低压负载节点的并联无功补偿取代供电系统高压通路的串联无功补偿的方法。结果。已开发出一种对供电电路进行连续变换的算法,从而可以估算出补偿电容器的电容值,在此电容值下,系统中的无功功率可得到完全补偿。独创性所提出的计算补偿单元参数的分析方法,使我们有可能省去复杂的计算机优化方法,并有可能估算出按负载和网络份额分配的补偿容量。实用价值。所提出的技术可以通过简单的算法,高精度地确定补偿装置的必要参数,为供电系统提供最佳模式。所提出的算法可以很容易地在微控制器系统中实现,用于自动控制供电系统的模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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