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Local voting protocol in decentralized load balancing problem with switched topology, noise, and delays

机译:具有切换拓扑,噪声和延迟的分散负载平衡问题的本地投票协议

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In this paper the applicability of the local voting protocol with nonvanishing step-size for decentralized stochastic network load balancing is studied under nonstationary problem formulation. The network system was considered to have a switched topology, and the control strategy uses noisy and delayed measurements. Nonvanishing (for example, constant) step-size allows to achieve the better convergence rate and copes with time-varying loads and productivities of agents (nodes). Conditions for achieving a suboptimal level of loading agents are established, and an estimate of the appropriate level of suboptimality is given depending on the step-size of the control algorithm, the structure of the averaged network and the statistical properties of noise and delays in measurements. Obtained theoretical results are illustrated by simulations of simultaneously processing of 106 tasks by 1024 agents with 2048 links. It is examined that the performance of the adaptive multi-agent strategy with redistribution of tasks among “connected” neighbors is significantly better than the performance of the strategy without redistribution.
机译:本文在非视野问题制定下研究了本地投票协议对分散的随机网络负载平衡的非衰弱步长的适用性。网络系统被认为具有交换拓扑,控制策略使用噪声和延迟测量。非衰弱(例如,常数)阶梯大小允许通过具有时变的负载和代理的产品(节点)来实现更好的收敛速率和应对性。建立了实现加载剂次优级别的条件,并且根据控制算法的阶梯大小,对平均网络的结构和测量中的噪声统计性质的阶梯大小来给出对适当水平的次优级的估计。获得的理论结果通过同时处理1024个试剂的同时处理1024个具有2048个链路的仿真来说明。考试据检查,在“连接”邻居之间的任务重新分配的自适应多代理策略的性能明显优于策略的性能而不再分布。

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