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Load balancing in distributed computing systems using fuzzy expert systems

机译:使用模糊专家系统的分布式计算系统中的负载平衡

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Distributed computing systems have come about due to the rapid increase in processor and/or memory hungry applications coupled with the advent of low-cost powerful workstations. We present fuzzy functions to model load balancing in distributed computing systems. Due to lack of communication delays in message passing, a complete and consistent view of the entire system may never be available to a node of the system. Most of the previous work in load balancing, and distributed decision making in general, does not effectively take into account the uncertainty and inconsistency in state information. Also, both the load patterns and task length descriptions are based on crisp values, which may be inconvenient. Most of the research that uses fuzzy descriptions considers fixed fuzzy function parameter values that can only match in fixed load patterns. The aim of this paper is to solve the uncertainty problem in state information and task selection for migration using proposed fuzzy functions of variable membership values, and to propose an expert system that uses these fuzzy functions in decision making. The proposed approach has been studied by means of simulation. Performance, measured in terms of the mean response time, is improved in all cases.
机译:分布式计算系统的出现是由于处理器和/或内存不足应用的迅速增加,以及低成本,功能强大的工作站的出现。我们提出模糊函数来建模分布式计算系统中的负载平衡。由于消息传递中缺少通信延迟,因此整个系统的完整,一致的视图可能永远对系统的节点不可用。负载平衡和分布式决策方面的大多数先前工作都没有有效地考虑状态信息的不确定性和不一致性。同样,负载模式和任务长度说明均基于清晰的值,这可能会带来不便。大多数使用模糊描述的研究都考虑了只能在固定负载模式下匹配的固定模糊函数参数值。本文的目的是使用提出的可变隶属度值模糊函数解决状态信息和迁移任务选择中的不确定性问题,并提出一种在决策中使用这些模糊函数的专家系统。通过仿真研究了所提出的方法。在所有情况下,以平均响应时间衡量的性能都会得到改善。

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