Optimal reactive power dispatch by furnishing UPFC using multi-objective hybrid GAPSO approach for transmission loss minimisation and voltage stability

Shilpa S. Shrawane, M. Diagavane, N. Bawane
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引用次数: 5

Abstract

The goal of optimal reactive power dispatch is to make the transmission loss minimal in addition to control of voltage profile such that the voltage deviations at the load buses for various loading conditions. By furnishing Flexible AC Transmission System devices in the transmission system, the power control can be finely achieved. The paper describes Optimal Reactive Power Dispatch for the power loss minimisation using optimal location of Unified Power Flow Controller for loss minimisation. The power flow is first solved by Newton Raphson method without implementing or furnishing Unified Power Flow Controller and then by furnishing them randomly in the IEEE -30 bus system. Unified Power Flow Controller allows control of real and reactive power both in addition to voltage magnitude control at various buses. In this paper, optimal reactive power dispatch is applied using the hybrid GA -PSO. Simulations are performed on IEEE-30 bus test system using MATLAB software package to ensure efficacy of the proposed algorithm. This paper aims at to find the optimum usage of Unified Power Flow Controller which means the finding of the optimal location where their influence would be more useful.
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采用多目标混合GAPSO方法优化UPFC无功功率调度,实现传输损耗最小化和电压稳定
无功优化调度的目标是在控制电压分布的基础上,使输电损耗最小,从而使各负荷母线处的电压偏差在不同的负荷条件下保持不变。通过在传动系统中配置柔性交流传动系统装置,可以很好地实现功率控制。本文介绍了利用统一潮流控制器的最优位置实现功率损耗最小的最优无功调度。在IEEE -30总线系统中,首先采用Newton Raphson法求解潮流,而不实现或配置统一潮流控制器,然后随机配置统一潮流控制器。统一的潮流控制器允许控制实际功率和无功功率,以及在各种总线上的电压幅度控制。本文采用遗传算法-粒子群算法混合进行无功优化调度。利用MATLAB软件包在IEEE-30总线测试系统上进行了仿真,验证了算法的有效性。本文旨在寻找统一潮流控制器的最佳使用方法,即找到最优位置,使其影响更有效。
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