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An Optimal and Distributed Method for Voltage Regulation in Power Distribution Systems

机译:配电网电压调节的优化分布式方法

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摘要

This paper addresses the problem of voltage regulation in power distribution networks with deep-penetration of distributed energy resources, e.g., renewable-based generation, and storage-capable loads such as plug-in hybrid electric vehicles. We cast the problem as an optimization program, where the objective is to minimize the losses in the network subject to constraints on bus voltage magnitudes, limits on active and reactive power injections, transmission line thermal limits and losses. We provide sufficient conditions under which the optimization problem can be solved via its convex relaxation. Using data from existing networks, we show that these sufficient conditions are expected to be satisfied by most networks. We also provide an efficient distributed algorithm to solve the problem. The algorithm adheres to a communication topology described by a graph that is the same as the graph that describes the electrical network topology. We illustrate the operation of the algorithm, including its robustness against communication link failures, through several case studies involving 5-, 34-, and 123-bus power distribution systems.
机译:本文解决了配电网中的电压调节问题,该配电网具有分布式能源的深度渗透,例如可再生能源发电以及可插电式混合动力汽车等具有存储能力的负载。我们将此问题作为优化程序,其目标是在受到总线电压幅值,有功和无功注入限制,传输线热限制和损耗的限制的情况下,将网络中的损耗降至最低。我们提供了充分的条件,可以通过其凸松弛来解决优化问题。使用现有网络中的数据,我们表明大多数网络都有望满足这些充分条件。我们还提供了一种有效的分布式算法来解决该问题。该算法遵守由与描述电网拓扑的图相同的图描述的通信拓扑。通过涉及5、34和123总线配电系统的若干案例研究,我们说明了该算法的操作,包括其对通信链路故障的鲁棒性。

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