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Optimal Tap Setting of Voltage Regulation Transformers in Unbalanced Distribution Systems

机译:不平衡配电系统中调压变压器的最佳抽头设置

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In this paper, we propose a method to optimally set the tap position of voltage regulation transformers in distribution systems. We cast the problem as a rank-constrained semidefinite program (SDP), in which the transformer tap ratios are captured by 1) introducing a secondary-side “virtual” bus per transformer, and 2) constraining the values that these virtual bus voltages can take according to the limits on the tap positions. Then, by relaxing the non-convex rank-1 constraint in the rank-constrained SDP formulation, one obtains a convex SDP problem. The tap positions are determined as the ratio between the primary-side bus voltage and the secondary-side virtual bus voltage that result from the optimal solution of the relaxed SDP, and then rounded to the nearest discrete tap values. To efficiently solve the relaxed SDP, we propose a distributed algorithm based on the alternating direction method of multipliers (ADMM). We present several case studies with single- and three-phase distribution systems to demonstrate the effectiveness of the distributed ADMM-based algorithm, and compare its results with centralized solution methods.
机译:在本文中,我们提出了一种在配电系统中优化设置调压变压器抽头位置的方法。我们将此问题作为等级受限的半定性程序(SDP)进行了介绍,其中通过以下方式捕获变压器的抽头比率:1)为每个变压器引入次级侧“虚拟”母线,以及2)约束这些虚拟母线电压可以达到的值根据分接位置的限制。然后,通过在秩受约束的SDP公式中放宽非凸秩1约束,可以获得凸SDP问题。抽头位置确定为由松弛SDP的最佳解得到的初级侧母线电压与次级侧虚拟母线电压之比,然后四舍五入到最接近的离散抽头值。为了有效地解决松弛的SDP,我们提出了一种基于乘法器交替方向法(ADMM)的分布式算法。我们目前使用单相和三相配电系统进行若干案例研究,以证明基于分布式ADMM的算法的有效性,并将其结果与集中式解决方案方法进行比较。

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