通过网络流分析,规划智能电网运行配电主馈线

Jose L. Morillo, Juan F. Pérez, N. Quijano, A. Cadena
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引用次数: 0

摘要

规划配电系统(DS)的扩展是一个非线性和组合的问题,结合了技术和监管的限制。通常,DS的规划旨在实现径向拓扑,以降低其复杂性。然而,在智能电网环境中,配电馈线需要重新配置,以便在故障事件中在馈线之间转移负载,或者补偿分布式发电(DG)引起的电压分布和电能质量问题。在本文中,我们提出了一种新的方法来规划主馈线,它考虑了在开环和闭环布置下的DS性能。为此,我们引入了到达电流的概念,我们用它来定义和解决最小功率损耗流问题。我们为每一种导体解决了这个问题,考虑找到一组主馈线候选者。此外,还进行了效率评估,以在候选主投料机中选择最佳投料机。测试系统的仿真结果显示了该方法如何能够捕获开环和闭环操作,明确考虑智能电网方案中DS扩展规划中的DG。
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Planning distribution primary feeders for smart-grid operation via network flow analysis
Planning the expansion of distribution systems (DS) is a nonlinear and combinatorial problem that combines technical and regulatory constraints. Commonly, the planning of DS is intended to achieve a radial topology to reduce its complexity. However, in a smart-grid context, distribution feeders are subject to reconfigurations to transfer load between feeders in failure events, or to compensate for voltage profile and power quality issues caused by distributed generation (DG). In this paper we propose a novel methodology for the planning of primary feeders, which considers the DS performance in both open and closedloop arrangements. To this end we introduce the concept of reach current, which we use to define and solve a minimum power-loss flow problem. We solve this problem for each type of conductor considered to find a set of primary-feeder candidates. Additionally, an efficiency evaluation is performed to select the best among the candidate primary feeders. Simulation results on a test system show how this method is able to capture open and closed-loop operations, explicitly considering DG in the DS expansion planning within a smart-grid scheme.
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