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Distributed Continuous-Time Algorithms for Optimal Resource Allocation With Time-Varying Quadratic Cost Functions

机译:分布式连续时间算法,具有时变二次成本函数的最佳资源分配

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In this article, we propose distributed continuous-time algorithms to solve the optimal resource allocation problem with certain time-varying quadratic cost functions for multiagent systems. The objective is to allocate a quantity of resources while optimizing the sum of all the local time-varying cost functions. Here, the optimal solutions are trajectories rather than some fixed points. We consider a large number of agents that are connected through a network, and our algorithms can be implemented using only local information. By making use of the prediction–correction method and the nonsmooth consensus idea, we first design two distributed algorithms to deal with the case when the time-varying cost functions have identical Hessians. We further propose an estimator-based algorithm which uses distributed average tracking theory to estimate certain global information. With the help of the estimated global information, the case of nonidentical constant Hessians is addressed. In each case, it is proved that the solutions of the proposed dynamical systems with certain initial conditions asymptotically converge to the optimal trajectories. We illustrate the effectiveness of the proposed distributed continuous-time optimal resource allocation algorithms through simulations.
机译:在本文中,我们提出了分布式的连续时间算法,以解决多元天动系统的某些时变二次成本函数的最佳资源分配问题。目的是分配一定数量的资源,同时优化所有局部时变成成本函数的总和。在这里,最佳解决方案是轨迹而不是一些固定点。我们考虑通过网络连接的大量代理,并且我们的算法可以仅使用本地信息来实现。通过利用预测校正方法和非线性共识思想,我们首先设计两个分布式算法来处理当时的成本函数具有相同的Hessians时的情况。我们进一步提出了一种基于估计的估计算法,它使用分布式平均跟踪理论来估计某些全局信息。在估计的全球信息的帮助下,解决了非肯定的乖乖的Hessians。在每种情况下,证明了所提出的动态系统的解决方案,其具有某些初始条件渐近地会聚到最佳轨迹。我们通过模拟说明了所提出的分布式连续时间最佳资源分配算法的有效性。

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