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Optimal sizing and placement of energy storage systems and on-load tap changer transformers in distribution networks

机译:配电网络中储能系统和有载分接开关变压器的最佳尺寸和位置

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摘要

The large-scale deployment of distributed energy resources will produce reverse power flows, voltage, and congestion problems in the distribution networks. This paper proposes a novel optimization model to support distribution system operators planning future medium voltage distribution networks characterized by high penetration of behind-the-meter distributed energy resources. The optimization model defines the optimal mix, placement, and size of on-load tap charger transformers and energy storage devices with the objectives of mitigating network technical problems and minimizing both investment and operation costs. The proposed optimization model relaxes the non-convex formulation of the optimal power flow to a constrained second-order cone programming model and exactly linearizes the non-linear model of the on-load tap changer transformer via binary expansion scheme and big-M method. These two transformations reduce the computational burden of the optimization allowing it to be applicable to real-scale distribution grids, as demonstrated by the results. The numerical results also show that the joint optimization of energy storage devices and on-load tap changer transformers produces a more affordable and flexible planning strategy than the individual optimization of the technologies.
机译:分布式能源的大规模部署将在配电网络中产生反向功率流,电压和拥塞问题。本文提出了一种新颖的优化模型,以支持配电系统运营商规划未来的中压配电网,这些中压配电网的特点是其背后的分布式能源的高渗透率。优化模型定义了有载抽头充电器变压器和储能设备的最佳组合,放置和尺寸,其目的是减轻网络技术问题并最小化投资和运营成本。所提出的优化模型将最优潮流的非凸形式放宽为约束二阶锥规划模型,并通过二进制展开方案和big-M方法将有载分接开关变压器的非线性模型精确地线性化。这两个变换减少了优化的计算负担,从而使其可应用于实际规模的配电网,如结果所示。数值结果还表明,与单独优化技术相比,储能设备和有载分接开关变压器的联合优化产生了一种更实惠,更灵活的规划策略。

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