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首页> 外文期刊>Journal of systems architecture >A prediction-based adaptive location policy for distributed load balancing
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A prediction-based adaptive location policy for distributed load balancing

机译:基于预测的分布式负载均衡自适应位置策略

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The location policy in distributed load balancing is to locate the destination nodes to or from which tasks will be transferred. An efficient location policy is required to achieve high performance on distributed load balancing. In this paper, we propose a new distributed adaptive location policy based on predictable state knowledge. The predictable state knowledge in each node is composed of the system state information collected at run time and the predefined static information that is a priority order of each node for transferring tasks. The proposed scheme systematically maintains the predictable state knowledge in each node by using an efficient data structure and a rule for collecting state information with low overheads. When the state of a node becomes heavily-loaded, the proposed scheme predicts both heavily-loaded nodes and lightly-loaded nodes by exploiting predictable state knowledge and then finds a good lightly-loaded node that minimizes useless polling and maximizes even load distribution. An analytic model is developed to compare the presented scheme with other well known schemes. The validity of the model is checked with an event-driven simulation, and it is shown that the presented scheme exhibits a significant performance improvement over other schemes, especially at high system loads. Also, the presented scheme is shown to significantly improve polling hit ratio and to avoid system instability.
机译:分布式负载平衡中的位置策略是定位要向其传输任务或从其传输任务的目标节点。需要有效的位置策略以在分布式负载平衡上实现高性能。在本文中,我们提出了一种基于可预测状态知识的新的分布式自适应位置策略。每个节点中的可预测状态知识由运行时收集的系统状态信息和预定义的静态信息组成,该信息是每个节点用于传输任务的优先级顺序。所提出的方案通过使用有效的数据结构和用于以低开销收集状态信息的规则来系统地维护每个节点中的可预测状态知识。当节点的状态变得很重时,所提出的方案通过利用可预测的状态知识来预测重负载的节点和轻负载的节点,然后找到一个良好的轻负载的节点,该节点最小化了无用的轮询并最大化了均匀的负载分布。开发了一个分析模型,以将提出的方案与其他众所周知的方案进行比较。通过事件驱动的仿真检查了模型的有效性,结果表明,与其他方案相比,该方案具有显着的性能改进,尤其是在系统负载较高的情况下。同样,显示的方案可以显着提高轮询命中率并避免系统不稳定。

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