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Optimal Capacitor Placement to Distribution Transformers for Power Loss Reduction in Radial Distribution Systems

机译:径向分布系统中用于减少功率损耗的最佳电容器放置在配电变压器中

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Deploying shunt capacitor banks in distribution systems can effectively reduce the power loss and provide additional benefits for system operation. In practice, the power loss on distribution transformers can account for a considerable portion of the overall loss. This paper proposes a method for optimal placement of capacitor banks to the distribution transformers to reduce power loss. The capacitor bank locations are considered at the low-side of transformers. The net present value (NPV) criterion is adopted to evaluate the cost benefit of the capacitor installation project. First, an explicit formula for directly calculating the power loss of radial distribution systems is derived. Then, the optimal capacitor bank placement is formulated as a mixed-integer programming (MIP) model maximizing the NPV of the project subject to certain constraints. The model is suitable for being solved by commercial MIP packages, and the operational control of the capacitor banks to maximize the power loss reduction can be simply achieved by local automatic switching according to VAR measurements. The proposed method has been practically applied in the Macau distribution system, and the simulation results show that the proposed method is computationally efficient, and a considerable positive NPV can be obtained from the optimal capacitor bank placement.
机译:在配电系统中部署并联电容器组可以有效减少功率损耗,并为系统运行带来更多好处。实际上,配电变压器的功率损耗可占总损耗的很大一部分。本文提出了一种将电容器组最佳地放置到配电变压器上以减少功率损耗的方法。电容器组的位置在变压器的低端。净现值(NPV)准则用于评估电容器安装项目的成本效益。首先,导出了直接计算径向配电系统功率损耗的明确公式。然后,将最佳电容器组放置公式化为混合整数规划(MIP)模型,该模型在一定约束下最大化了项目的NPV。该模型适用于商用MIP封装,可以通过根据VAR测量进行本地自动切换来简单地实现电容器组的运行控制,以最大程度地降低功耗。所提出的方法已经在澳门的配电系统中得到了实际应用,仿真结果表明,所提出的方法具有较高的计算效率,并且通过优化电容器组的位置可以得到相当大的正NPV。

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