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首页> 外文期刊>Control of Network Systems, IEEE Transactions on >A Hierarchical Optimization Architecture for Large-Scale Power Networks
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A Hierarchical Optimization Architecture for Large-Scale Power Networks

机译:大型电网的分层优化架构

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We present a hierarchical optimization architecture for large-scale power networks that overcomes limitations of fully centralized and fully decentralized architectures. The architecture leverages principles of multigrid computing schemes, which are widely used in the solution of partial differential equations on massively parallel computers. The top layer of the architecture uses a coarse representation of the entire network, whereas the bottom layer is composed of a family of decentralized optimization agents each operating on a network subdomain at full resolution. We use an alternating direction method of multipliers (ADMM) framework to drive coordination of the decentralized agents. We show that state and dual information obtained from the top layer can be used to accelerate the coordination of the decentralized optimization agents and to recover optimality for the entire system. We demonstrate that the hierarchical architecture can be used to manage large collections of microgrids.
机译:我们提出了一种针对大型电力网络的分层优化架构,该架构克服了完全集中式和完全分散式架构的局限性。该体系结构利用了多网格计算方案的原理,该原理被广泛用于大规模并行计算机上的偏微分方程的求解中。体系结构的顶层使用整个网络的粗略表示,而底层则由一系列分散的优化代理组成,每个代理均以全分辨率在网络子域上运行。我们使用乘数的交替方向方法(ADMM)框架来驱动分散代理的协调。我们表明,从顶层获得的状态和对偶信息可用于加快分散式优化代理的协调并恢复整个系统的最优性。我们证明了分层体系结构可用于管理微电网的大型集合。

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