Application of JAYA Algorithm in Active Power Loss Reduction in Distribution System

Sangeeta DebBarman, R. Roy, K. Namrata
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Abstract

In this paper, a new metaheuristic techniques i.e JAYA Algorithm is suggested to determine the size optimally and locate the shunt capacitors for compensation of active power in distribution system. Radial distribution system is becoming vital in transmission of power from power station to customers. So, radial distribution system suffers real power loss and low bus voltages. This issue can be solved by adding capacitors at optimal location to lower active power losses and to upgrade the voltage profile while satisfying constraints of radial distribution system. Determination of stable size and location of capacitors optimally in distribution system is a complicated optimization problem. So, it requires a different approach. The main function is power loss minimization which is determined by optimal sizing of capacitor. In the paper the proposed algorithm is incorporated for solving the problem and the work has been simulated in IEEE 33 bus system and IEEE69 bus system with single node injection and triple node injection of capacitors. The results of the suggested algorithm are analyzed with other existing optimization algorithm in respect of up- grading the voltage profile and reducing the power loss.
JAYA算法在配电系统有功损耗降低中的应用
本文提出了一种新的元启发式算法——JAYA算法,用于配电网有功补偿并联电容器的最优尺寸确定和定位。径向配电系统在电站向用户输送电力中起着至关重要的作用。因此,径向配电系统具有实际的功率损耗和较低的母线电压。在满足径向配电系统的约束条件下,通过在最优位置增加电容器来降低有功损耗和改善电压分布,可以解决这一问题。配电网中电容器的稳定尺寸和最佳位置的确定是一个复杂的优化问题。所以,这需要一种不同的方法。其主要功能是通过电容器的最佳尺寸来确定功率损耗的最小化。本文将该算法应用于该问题的求解,并在具有电容单节点注入和三节点注入的ieee33总线系统和IEEE69总线系统中进行了仿真。并将该算法的优化结果与现有的优化算法进行了比较,从提高电压分布和降低功率损耗两个方面进行了分析。
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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