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A robust distributed system incremental cost estimation algorithm for smart grid economic dispatch with communications information losses

机译:具有通信信息丢失的智能电网经济调度的鲁棒分布式系统增量成本估算算法

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With an increasing number of controllable distributed energy resources deployed and integrated into the power system, how to economically manage these distributed resources will become a challenge for the future smart grid. To solve the issue, consensus based distributed economic dispatch algorithms have been introduced in the literature as computationally scalable approaches. However, in real-world applications with imperfect communications networks, the performance of consensus-based economic dispatch algorithms degrades when information losses occur. In this paper, a robust distributed system incremental cost estimation (RICE) algorithm is introduced to solve the Economic Dispatch Problem (EDP) in a smart grid environment in a distributed way considering communications information losses. Unlike the existing consensus-based algorithms to solve EDP, RICE algorithm has two updating layers running in parallel in each distributed controller: one layer uses the gossip updating rule to estimate the system's average power mismatch, while the other layer uses the consensus updating rule to update the system Incremental Cost (IC) estimation. In this approach, the vulnerability of consensus-based algorithms to communications information losses is eliminated. The convergence and optimality of the algorithm are guaranteed as long as the undirected communications topology among local controllers is connected. Several case studies are presented to illustrate the performance of the proposed algorithm, and show the robustness under different information loss scenarios with different communications topologies. (C) 2015 Elsevier Ltd. All rights reserved.
机译:随着越来越多的可控分布式能源资源被部署并集成到电力系统中,如何经济地管理这些分布式资源将成为未来智能电网的挑战。为了解决该问题,文献中已经引入了基于共识的分布式经济调度算法,作为可计算扩展的方法。但是,在通信网络不完善的现实应用中,当发生信息丢失时,基于共识的经济调度算法的性能会下降。本文介绍了一种健壮的分布式系统增量成本估算(RICE)算法,以解决智能电网环境中考虑通信信息损失的分布式经济分配问题(EDP)。与现有的基于共识的解决EDP的算法不同,RICE算法在每个分布式控制器中有两个并行运行的更新层:一层使用八卦更新规则来估计系统的平均功率不匹配,而另一层则使用共识更新规则来进行计算。更新系统增量成本(IC)估算值。通过这种方法,消除了基于共识算法对通信信息丢失的脆弱性。只要连接了本地控制器之间的无向通信拓扑,就可以保证算法的收敛性和最优性。提出了几个案例研究来说明所提出算法的性能,并显示在具有不同通信拓扑的不同信息丢失情况下的鲁棒性。 (C)2015 Elsevier Ltd.保留所有权利。

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