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Dynamic load balancing strategies for conservative parallel simulations

机译:用于保守并行仿真的动态负载平衡策略

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This paper studies the problem of load balancing for conservative parallel simulations for execution on a multicomputer. The synchronization protocol makes use of Chandy-Misra null-messages. We propose a dynamic load balancing algorithm which assumes no compile time knowledge about the workload parameters. It is based upon a process migration mechanism, and the notion of CPU-queue length, which indicates the workload at each processor.We examine two variations for the algorithm which we refer to as centralized and multi-level hierarchical methods, in the context of queueing network simulation of a torus. The torus was chosen because it of its many cycles aid in the formation of deadlock making it a stress test for any conservative synchronization protocols. Our experiments indicate that our dynamic load balancing schemes significantly reduce the run time of an optimized version of Chandy-Misra null message approach, and decreases by 30-40% the synchronization overhead when compared to the use ofa static partitioning algorithm. Significantly, the results obtained also indicate that the multi-level scheme always outperforms both the centralized load balancing approach and the static partitioning algorithm.
机译:本文研究了在多计算机上执行的保守并行仿真的负载平衡问题。同步协议使用了Chandy-Misra空消息。我们提出了一种动态负载平衡算法,该算法不假设有关工作负载参数的编译时知识。它基于进程迁移机制和CPU队列长度的概念,该概念指示每个处理器的工作量。在以下方面,我们研究了算法的两个变体,我们将其称为集中式和多层分层方法环形网络的排队网络仿真。选择环面是因为它的许多周期有助于形成死锁,从而使其成为任何保守同步协议的压力测试。我们的实验表明,与使用静态分区算法相比,我们的动态负载平衡方案显着减少了优化版本的Chandy-Misra空消息方法的运行时间,并减少了30-40%的同步开销。重要的是,获得的结果还表明,多级方案始终优于集中式负载平衡方法和静态分区算法。

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