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Agent-based load balancing on homogeneous minigrids: macroscopic modeling and characterization

机译:同类小型网格上基于代理的负载均衡:宏观建模和表征

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摘要

In this paper, we present a macroscopic-characterization of agent-based load balancing in homogeneous minigrid environments. The agent-based load balancing is regarded as agent distribution from a macroscopic point of view. We study two quantities on minigrids: the number and size of teams where agents (tasks) queue. In macroscopic modeling, the load balancing mechanism is characterized using differential equations. We show that the load balancing we concern always converges to a steady state. Furthermore, we show that load balancing with different initial distributions converges to the same steady state gradually. Also, we prove that the steady state becomes an even distribution if and only if agents have complete knowledge about agent teams on minigrids. Utility gains and efficiency are introduced to measure the quality of load balancing. Through numerical simulations, we discuss the utility gains and efficiency of load balancing in different cases and give a series of analysis. In order to maximize the utility gain and the efficiency, we theoretically study the optimization of agents' strategies. Finally, in order to validate our proposed agent- based load balancing mechanism, we develop a computing platform, called simulation system for grid task distribution (SSGTD). Through experimentation, we note that our experimental results in general confirm our theoretical proofs and numerical simulation results from the proposed equation system. In addition, we find a very interesting phenomenon, that is, agent-based load balancing mechanism is topology-independent.
机译:在本文中,我们提出了在同质小型网格环境中基于代理的负载均衡的宏观特征。从宏观的角度来看,基于代理的负载平衡被视为代理分布。我们在小型网格上研究了两个数量:代理(任务)排队的团队的数量和规模。在宏观建模中,使用微分方程来表征负载平衡机制。我们表明,我们关注的负载平衡始终会收敛到稳定状态。此外,我们表明具有不同初始分布的负载平衡逐渐收敛到相同的稳态。同样,我们证明,当且仅当座席对小型网格上的座席团队具有完全的了解时,稳态状态才能成为均匀分布。引入效用收益和效率来衡量负载平衡的质量。通过数值模拟,我们讨论了不同情况下负载平衡的效用收益和效率,并进行了一系列分析。为了最大化效用收益和效率,我们在理论上研究了代理商策略的优化。最后,为了验证我们提出的基于代理的负载平衡机制,我们开发了一个计算平台,称为网格任务分配仿真系统(SSGTD)。通过实验,我们注意到我们的实验结果总体上证实了所提出方程系统的理论证明和数值模拟结果。另外,我们发现一个非常有趣的现象,即基于代理的负载平衡机制与拓扑无关。

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