Delay effects on distributed constrained optimization over double‐integrator multi‐agent systems

Bingxue Shao, Minghui Lu, Xiasheng Shi, Lu Ren
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Abstract

Communication plays a pivotal role in distributed optimization problems, where unavoidable communication delays are presented. This research studies the distributed constrained optimization problem concerning second‐order multi‐agent systems with double‐integrator under time‐varying communication delays. An adaptive distributed optimization algorithm using multi‐agent system consensus technique and Karush–Kuhn–Tucker conditions is developed to deal with this problem. The local constraint term is solved adaptively through local dual Lagrange multipliers. When the cost function is strongly convex, and the communication topology is undirected and connected, we employ the Lasalle invariance principle to analyze the delay effects on convergence analysis. Moreover, we give an upper bound on communication delay. Finally, the provided numerical simulation examples demonstrate that the developed method is robust for the limited communication delay and the derived results are conservative.
双积分器多代理系统分布式约束优化的延迟效应
在分布式优化问题中,通信延迟是不可避免的。本研究探讨了时变通信延迟条件下具有双积分器的二阶多代理系统的分布式约束优化问题。利用多代理系统共识技术和 Karush-Kuhn-Tucker 条件,开发了一种自适应分布式优化算法来处理该问题。局部约束项通过局部对偶拉格朗日乘法器自适应求解。当成本函数为强凸函数、通信拓扑结构为无向且连接时,我们采用拉萨尔不变性原理分析了延迟对收敛分析的影响。此外,我们还给出了通信延迟的上限。最后,所提供的数值模拟实例表明,所开发的方法对于有限的通信延迟是稳健的,所得出的结果也是保守的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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