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Distributed Projection Subgradient Algorithm Over Time-Varying General Unbalanced Directed Graphs

机译:时变的一般不平衡有向图的分布式投影次梯度算法

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This paper is concerned with a general class of distributed constrained optimization problems over a multiagent network, where the global objective function is represented by the sum of all local objective functions. Each agent in the network only knows its own local objective function, and is restricted to a global nonempty closed convex set. We discuss the scenario where the communication of the whole multiagent network is expressed as a sequence of time-varying general unbalanced directed graphs. The directed graphs are required to be uniformly jointly strongly connected and the weight matrices are only rowstochastic. To collaboratively deal with the optimization problems, existing distributed methods mostly require the communication graph to be fixed or balanced, which is impractical and hardly inevitable. In contrast, we propose a new distributed projection subgradient algorithm which is applicable to the time-varying general unbalanced directed graphs and does not need each agent to knowits in-neighbors' out-degree. When the objective functions are convex and Lipschitz continuous, it is proved that the proposed algorithm exactly converges to the optimal solution. Simulation results on a numerical experiment are shown to substantiate feasibility of the proposed algorithm and correctness of the theoretical findings.
机译:本文涉及多类Agent网络上的一类一般的分布式约束优化问题,其中全局目标函数由所有局部目标函数之和表示。网络中的每个代理仅知道其自己的局部目标函数,并且仅限于全局非空封闭凸集。我们讨论了将整个多主体网络的通信表示为一系列时变的一般不平衡有向图的情况。有向图需要统一共同强连接,并且权重矩阵只是行随机的。为了协同处理优化问题,现有的分布式方法大多要求通信图是固定的或平衡的,这是不切实际的,也是不可避免的。相比之下,我们提出了一种新的分布式投影次梯度算法,该算法适用于时变的一般不平衡有向图,不需要每个代理知道邻居的出站度。当目标函数为凸且Lipschitz连续时,证明了该算法完全收敛于最优解。数值实验的仿真结果表明该算法的可行性和理论结果的正确性。

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