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首页> 外文期刊>Control of Network Systems, IEEE Transactions on >Optimization Dynamics: A Bus-Level Distributed Approach for Optimal Power Flows
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Optimization Dynamics: A Bus-Level Distributed Approach for Optimal Power Flows

机译:优化动力学:一种用于最佳功率流的总线级分布式方法

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摘要

We propose a continuous-time optimization dynamics approach in this paper to solve the nonconvex optimal power flow (OPF) problem. The proposed approach naturally uses the distributed power flow structure for computation. Specifically, each bus in the power network plays as an individual computing agent, which only uses local information to update its own voltage variables as well as Lagrange multipliers. Therefore, the proposed approach is completely distributed at the bus level. Under mild conditions, we first prove the local existence of a unique, continuous solution (with respect to the initial condition) to our optimization dynamics. Next, we show that every trajectory starting from a local neighborhood converges to a pair of primal and dual optima (saddle point) for the associated OPF problem. Simulations based on the IEEE benchmark systems are provided to verify the effectiveness of the proposed approach.
机译:我们提出了一种连续时间优化动力学方法来解决非凸最优潮流(OPF)问题。所提出的方法自然使用分布式潮流结构进行计算。具体而言,电力网络中的每个总线都充当单独的计算代理,该代理仅使用本地信息来更新其自身的电压变量以及拉格朗日乘数。因此,所提出的方法完全分布在总线级别。在温和的条件下,我们首先证明了优化动力学的局部,连续解(相对于初始条件)的局部存在。接下来,我们显示了从局部邻域开始的每条轨迹会聚到相关联的OPF问题的一对最优和对偶最优点(鞍点)。提供了基于IEEE基准系统的仿真,以验证所提出方法的有效性。

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