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Fault tolerance in computational grids: perspectives challenges and issues

机译:计算网格中的容错能力:观点挑战和问题

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摘要

Computational grids are established with the intention of providing shared access to hardware and software based resources with special reference to increased computational capabilities. Fault tolerance is one of the most important issues faced by the computational grids. The main contribution of this survey is the creation of an extended classification of problems that incur in the computational grid environments. The proposed classification will help researchers, developers, and maintainers of grids to understand the types of issues to be anticipated. Moreover, different types of problems, such as omission, interaction, and timing related have been identified that need to be handled on various layers of the computational grid. In this survey, an analysis and examination is also performed pertaining to the fault tolerance and fault detection mechanisms. Our conclusion is that a dependable and reliable grid can only be established when more emphasis is on fault identification. Moreover, our survey reveals that adaptive and intelligent fault identification, and tolerance techniques can improve the dependability of grid working environments.
机译:建立计算网格的目的是提供对基于硬件和软件的资源的共享访问,并特别参考增加的计算能力。容错是计算网格面临的最重要的问题之一。该调查的主要贡献是创建了对计算网格环境中出现的问题的扩展分类。提议的分类将帮助网格的研究人员,开发人员和维护人员了解预期问题的类型。此外,已经确定了需要在计算网格的各个层上处理的不同类型的问题,例如与遗漏,交互和时序相关的问题。在此调查中,还对容错和故障检测机制进行了分析和检查。我们的结论是,只有在更加重视故障识别的情况下,才能建立可靠且可靠的电网。此外,我们的调查显示,自适应智能故障识别和容错技术可以提高电网工作环境的可靠性。

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