基于免疫算法的配电馈线相位优化配置

C. Lin, C.S. Chen, M.Y. Huang, H. Chuang, M. Kang, C.Y. Ho, C. Huang
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引用次数: 10

摘要

本文提出了一种免疫算法(IA)来推导配电系统侧变压器和配电变压器的换相策略,以增强配电系统的三相平衡。通过考虑分相电流不平衡、客户服务中断成本和人工成本,建立多目标函数来执行最优分相策略。为了证明所提出的方法在提高配电系统三相平衡方面的有效性,我们选择了台湾电力公司523个客户的实际配电馈线进行计算机模拟。在运行约束条件下,通过最小化目标函数,推导出通过选择横向变压器和配电变压器进行相位调整的换相策略。采用SCADA系统测量并采集了试验馈线在实施改相策略前后的相电流和中性电流。通过对侧变压器和配电变压器进行改相,试验馈线中性点电流已减小到小于过中性点电流限值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Phase Arrangement of Distribution Feeders Using Immune Algorithm
In this paper, the immune algorithm (IA) is proposed to derive the rephasing strategy arrangement of laterals and distribution transformers to enhance three phase balancing of distribution systems. The multi-objective function is formulated by considering the unbalance of phasing currents, the customer service interruption cost and labor cost to perform the optimal rephasing strategy. To demonstrate the effectiveness of the proposed methodology to enhance three-phase balancing of distribution systems, a practical distribution feeder in Taipower with 523 customers is selected for computer simulation. By minimizing the objective function subjected to the operation constraints, the rephasing strategy has been derived by selecting the laterals and distribution transformers for phasing adjustment. The phase currents and neutral currents of test feeder before and after the execution of proposed rephasing strategy have been measured and collected by the SCADA system in Taipower. It is found that the neutral current of test feeder has been reduced to be less than the over neutral current limit by executing the rephasing of laterals and distribution transformers.
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