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Hierarchical Distributed Voltage Regulation in Networked Autonomous Grids

机译:网络自治电网中的分层分布式调压

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We propose a novel algorithm to solve optimal power flow (OPF) that aims at dispatching controllable distributed energy resources (DERs) for voltage regulation at minimum cost. The proposed algorithm features unprecedented scalability to large distribution networks by utilizing an information structure based on networked autonomous grids (AGs). Specifically, each AG is a subtree of a large distribution network that has a tree topology. The topology and line parameters of each AG are known only to a regional coordinator (RC) that is responsible for communicating with and dispatching the DERs within this AG. The reduced network, where each AG is treated as a node, is managed by a central coordinator (CC), which knows the topology and line parameters of the reduced network only and communicates with all the RCs. We jointly explore this information structure and the structure of the linearized distribution power flow (LinDistFlow) model to derive a hierarchical, distributed implementation of the primal-dual gradient algorithm that solves the OPF. The proposed implementation significantly reduces the computation burden compared to the centrally coordinated implementation of the primal-dual algorithm. Numerical results on a 4,521-node test feeder show that the proposed hierarchical distributed algorithm can achieve an improvement of more than tenfold in the speed of convergence compared to the centrally coordinated primal-dual algorithm.
机译:我们提出了一种新颖的算法来解决最佳功率流量(OPF),其旨在以最小成本调度用于电压调节的可控分布能量资源(DER)。该算法通过利用基于联网自主网格(AGS)的信息结构来对大型分销网络具有前所未有的可扩展性。具体地,每个AG是具有树拓扑的大型分销网络的子树。每个AG的拓扑和线参数仅为区域协调员(RC)已知,该区域协调员负责与此AG中的频率传送和调度DER。减少的网络,其中每个ag被视为节点,由中央协调器(CC)管理,该中心协调员仅知道缩小网络的拓扑和行参数并与所有RC进行通信。我们共同探索了这种信息结构和线性化分配功率流(LindistFlow)模型的结构,以导出解决OPF的原始双梯度算法的分层分布式实现。与基因双算法的中央协调实施相比,建议的实施显着降低了计算负担。 4,521节点测试进纸器上的数值结果表明,与集中协调的原始算法相比,所提出的分布式算法可以实现收敛速度超过十倍。

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