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Optimal reactive power dispatch for real power loss minimization and voltage stability enhancement using Artificial Bee Colony Algorithm

机译:使用人造蜂菌落算法的实际功率损耗最小化和电压稳定性增强的最佳无功功率分配

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Reactive Power Dispatch (RPD) plays important role in power system reliability and security. This paper proposes the Optimal Reactive Power Dispatch (ORPD) for real power loss minimization, voltage deviation minimization and voltage stability enhancement using Artificial Bee Colony (ABC) Algorithm. ORPD is a mixed integer nonlinear optimization problem which includes both continuous and discrete control variables. The ABC algorithm is used to find the setting of control variables such as generator voltage magnitude, tap position of tap changing transformer and reactive power output of the compensation devices. The proposed algorithm is tested on IEEE 30 and 57 bus systems, Simulation results show that the proposed approach converges to better solutions and much faster than the earlier reported approaches in the literature. The optimization strategy is general and can be used to solve other power system optimization problems. (C) 2020 Elsevier B.V. All rights reserved.
机译:无功功率调度(RPD)在电力系统可靠性和安全性中起着重要作用。本文提出了使用人工蜂菌落(ABC)算法的实际功率损耗最小化,电压偏差最小化和电压稳定性增强的最佳无功功率调度(ORPD)。 ORPD是一个混合整数非线性优化问题,包括连续和离散控制变量。 ABC算法用于查找控制变量的设置,例如发电机电压幅度,抽头改变变压器的敲击位置和补偿装置的无功功率输出。在IEEE 30和57总线系统上测试了所提出的算法,仿真结果表明,所提出的方法会收敛到更好的解决方案,并且比文献中的早期报告的方法更快。优化策略是一般的,可用于解决其他电力系统优化问题。 (c)2020 Elsevier B.v.保留所有权利。

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