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Overloads management in active radial distribution systems: An optimization approach including network switching

机译:主动式径向分配系统中的过载管理:包括网络交换在内的优化方法

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This paper focuses on the overloads management in active radial distribution systems that host a significant amount of distributed generation (DG). In order to possibly reduce the amount of generation curtailed to remove congestion, and hence harvest as much renewable energy as possible, we propose a centralized optimization approach that includes the option to use remotely controlled grid switches and breakers so as to transfer distributed generation between feeders. As switching actions are modeled as binary variables, to mitigate the computational burden posed by the original mixed integer nonlinear programming (MINLP) problem we build upon a very convenient existing optimization framework that, for a radial distribution grid, transforms precisely the problem into a much simpler mixed integer quadratically constrained (MIQC) program. Although the approach focuses on overload removal in course of optimization it also inhibits violation of other operational constraints such as voltage limits. We prove the interest and feasibility of our approach using a snapshot of a 33-bus benchmark distribution system and of a 61-bus real-life distribution system model, whereas future work is planned to assess the benefits of the method using time-series.
机译:本文着重于托管大量分布式发电(DG)的主动径向配电系统中的过载管理。为了减少可能减少的发电量以消除拥堵,从而收获尽可能多的可再生能源,我们提出了一种集中式优化方法,其中包括使用远程控制的电网开关和断路器的选项,以便在支线之间转移分布式发电。由于将开关动作建模为二进制变量,为减轻原始混合整数非线性规划(MINLP)问题带来的计算负担,我们建立在非常方便的现有优化框架上,该框架对于径向分布网格将问题精确地转化为更简单的混合整数二次约束(MIQC)程序。尽管该方法侧重于在优化过程中消除过载,但它也禁止违反其他操作约束,例如电压限制。我们使用33总线基准配电系统和61总线现实生活配电系统模型的快照来证明我们的方法的兴趣和可行性,而计划未来的工作计划使用时间序列评估该方法的好处。

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