Economic dispatch of multi-agent network systems based on distributed finite-step consensus algorithm

Xiaopeng Wu, Ping He, Jie Dong
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Abstract

In this paper, the economic dispatch problem of multi-agent network systems is investigated based on distributed finite-step consensus iteration algorithm. In the proposed consensus strategy, the finite iteration steps can be decided based on the numbers of distinct nonzero eigenvalues of constructed Laplacian matrix, and different network topologies own the same results once given the same initial values. Besides, the power constraints of each generator node are considered to ensure the demand-supply balance of the whole multi-agents network systems. Finally, several case studies with different multi-agents network topologies are provided to verify the validity and correctness of the proposed iteration algorithm.
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基于分布式有限步共识算法的多智能体网络系统经济调度
本文研究了基于分布式有限步共识迭代算法的多智能体网络系统的经济调度问题。在该策略中,可以根据构造的拉普拉斯矩阵的不同非零特征值的个数来确定有限迭代步骤,并且给定相同的初始值,不同的网络拓扑具有相同的结果。同时考虑了各发电节点的功率约束,保证了整个多智能体网络系统的供需平衡。最后,以不同多智能体网络拓扑为例,验证了所提迭代算法的有效性和正确性。
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