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An agent oriented proactive fault-tolerant framework for grid computing

机译:面向代理的电网计算主动容错框架

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Because of computational grid heterogeneity, scale and complexity, faults become likely. Therefore, grid infrastructure must have mechanisms to deal with faults while also providing efficient and reliable services to its end users. Existing fault-tolerant approaches are inefficient because they are reactive and incomplete. They are reactive because they only deal with faults when they take place; they are incomplete because they only deal with certain types of faults. Proactive approaches increase efficiency by reducing the cost and time of operations and network resource usage by maintaining the state of executing applications and resuming operation when rescheduled. This paper presents an agent oriented, fault-tolerant grid framework where agents deal with individual faults proactively. Agents maintain information about hardware conditions, executing process memory consumption, available resources, network conditions and component mean time to failure. Based on this information and critical states, agent can improve the reliability and efficiency of grid services.
机译:由于计算网格异质性,规模和复杂性,故障变得可能。因此,网格基础架构必须具有处理故障的机制,同时还向其最终用户提供有效和可靠的服务。现有的容错方法效率低下,因为它们是反应性和不完整的。它们是反应性的,因为它们只在发生故障时处理错误;它们不完整,因为它们只处理某些类型的错误。主动方法通过减少操作和网络资源使用的成本和时间来提高效率,通过维护在重新安排时执行应用程序并恢复操作来提高运营和网络资源使用。本文介绍了一个面向的代理,容错电网框架,主动地处理各个故障。代理维护有关硬件条件的信息,执行流程存储器消耗,可用资源,网络条件和组件平均故障。基于此信息和关键状态,代理可以提高网格服务的可靠性和效率。

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