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Efficient Network Reconfiguration Using Minimum Cost Maximum Flow-Based Branch Exchanges and Random Walks-Based Loss Estimations

机译:使用最小成本,基于最大流量的分支交换和基于随机游走的损耗估算进行有效的网络重新配置

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The efficiency of network reconfiguration depends on both the efficiency of the loss estimation technique and the efficiency of the reconfiguration approach itself. We propose two novel algorithmic techniques for speeding-up the computational runtime of both problems. First, we propose an efficient heuristic algorithm to solve the distribution network reconfiguration problem for loss reduction. We formulate the problem of finding incremental branch exchanges as a minimum cost maximum flow problem. This approach finds the best set of concurrent branch exchanges yielding larger loss reduction with fewer iterations, hence significantly reducing the computational runtime. Second, we propose an efficient random walks-based technique for the loss estimation in radial distribution systems. The novelty of this approach lies in its property of localizing the computation. Therefore, bus voltage magnitude updates can be calculated in much shorter computational runtimes in scenarios where the distribution system undergoes isolated topological changes, such as in the case of network reconfiguration. Experiments on distribution systems with sizes of up to 10 476 buses demonstrate that the proposed techniques can achieve computational runtimes shorter with up to 7.78 times and with similar or better loss reduction compared to the Baran''s reconfiguration technique .
机译:网络重新配置的效率取决于损耗估计技术的效率和重新配置方法本身的效率。我们提出了两种新颖的算法技术来加快这两个问题的计算速度。首先,我们提出了一种有效的启发式算法来解决配电网重构问题,以减少损失。我们将寻找增量分支交换的问题公式化为最小成本最大流量问题。这种方法找到了最好的并发分支交换集,从而减少了迭代次数,从而减少了更多的损失,从而大大减少了计算时间。其次,我们提出了一种有效的基于随机游走的技术,用于径向分布系统中的损耗估计。这种方法的新颖之处在于其本地化计算的特性。因此,在配电系统经历孤立的拓扑变化的情况下(例如在网络重新配置的情况下),可以在更短的计算运行时间中计算总线电压幅度更新。在最大尺寸为10×476总线的配电系统上进行的实验表明,与Baran的重新配置技术相比,所提出的技术可缩短计算运行时间,最多可缩短7.78倍,并且损失减少量相似或更好。

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