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Reactive Power Optimization for Flat Voltage Profiles in Distribution Networks

机译:配电网中扁平电压配置的无功功率优化

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This paper considers achieving flat voltage profiles in a distribution network based on reactive power optimization (RPO) through voltage regulation devices (VRD). These devices include capacitor banks, load-tap-changing and regulating transformers, whose statuses can only assume pre-determined integer value levels, making this a non-convex problem. Two RPO-based algorithms are proposed, which can be applied to any initial states, node priority, topology and load model types. The first algorithm focuses on finding a practical solution by ensuring the VRD constraints are observed at each step. The second one focuses on finding the globally optimal solution by applying a convex relaxation technique and solving the resulting problem with the barrier interior point method. Here, the gradients are computed numerically, thus requiring no analytical functions of voltages in terms of VRDs. Numerical results and their analysis are examined on two test networks: 1) single feeder; and 2) network with laterals.
机译:本文认为基于电压调节装置(VRD)基于无功功率优化(RPO)在配电网中实现扁平电压型材。这些设备包括电容器组,负载分接 - 更改和调节变压器,其状态只能假设预定的整数值水平,使得这是一个非凸面问题。提出了两个基于RPO的算法,可以应用于任何初始状态,节点优先级,拓扑和负载模型类型。第一算法专注于通过确保在每个步骤中观察到VRD约束来找到实际解决方案。第二个专注于通过施加凸面松弛技术来找到全局最佳解决方案,并用屏障内部点法解决所产生的问题。这里,梯度在数字上计算,因此在VRD方面不需要对VRD的电压的分析功能。在两个测试网络上检查数值结果及其分析:1)单馈装置;和2)带侧面的网络。

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