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Distributed Event-Triggered Communication Scheme for Economic Dispatch Problem in Power System With Uncoordinated Step-Sizes

机译:具有不协调的阶梯大小的电力系统经济派遣问题的分布式事件触发通信方案

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摘要

Inspired by the distributed economic dispatch problem (EDP) in power system, this paper considers a problem of optimizing a sum of m local convex cost functions on an undirected network of m agents. Each agent in the network privately knows its own local convex objective function and is subjected to both coupling linear constraint and individual box constraints. To be able to reduce the requirements for information exchange among agents, we propose a novel fully event-triggered based distributed primal-dual algorithm for the convex optimization problem. Our algorithm allows the use of uncoordinated step-sizes and assumes that each agent communicates with its neighboring agents (the corresponding variables are updated) only at some independent event-triggered sampling time instants. Under some relatively standard assumptions (strong convexity and smoothness) on the objective functions, our theoretical analysis proves that the proposed algorithm can linearly seek the exact optimal solution when the upper bound of the uncoordinated step-sizes is smaller than a certain constant. We also conduct a clear estimate of the rate. Finally, a simple numerical example on distributed economic dispatch problem in power system is provided to illustrate the effectiveness of our event-triggered based optimization algorithm and validate the correctness of the analysis process.
机译:受到电力系统中分布式经济调度问题(EDP)的启发,本文考虑了优化在M代理的无向网络上的M个本地凸起成本函数的问题。网络中的每个代理私下都知道其自己的本地凸面目标函数,并经受耦合线性约束和单个框约束。为了能够降低代理商之间的信息交换要求,我们提出了一种用于凸优化问题的新型完全事件触发的分布式原始双向算法。我们的算法允许使用不协调的阶梯大小,并假设每个代理与其相邻代理(相应的变量正在更新)仅在某些独立的事件触发的采样时间瞬间通信。在某些相对标准的假设(强凸性和平滑度)上的客观函数下,我们的理论分析证明,当未计算的阶梯尺寸的上限小于一定常数时,所提出的算法可以线性地寻求精确的最佳解决方案。我们还明确估计率。最后,提供了一个简单的数字示例,用于发电系统中的分布式经济调度问题,以说明我们的事件触发的优化算法的有效性,并验证了分析过程的正确性。

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