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Comparison of Price-Based Static and Dynamic Job Allocation Schemes for Grid Computing Systems

机译:基于价格的网格计算系统静态和动态作业分配方案的比较

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摘要

Grid computing systems are a cost-effective alternative to traditional high-performance computing systems. However, the computing resources of a grid are usually far apart and connected by Wide Area Networks resulting in considerable communication delays. Hence, efficient allocation of jobs to computing resources for load balancing is essential in these grid systems. In this paper, two price-based dynamic job allocation schemes for computational grids are proposed whose objective is to minimize the execution cost for the grid users' jobs. One scheme tries to provide a system-optimal solution so that the expected price for the execution of all the jobs in the grid system is minimized, while the other tries to provide a job-optimal solution so that all the jobs in the system of the same size will be charged approximately the same expected price independent of the computers allocated for their execution to provide fairness. The performance of the proposed dynamic schemes is compared with static job allocation schemes using simulations.
机译:网格计算系统是传统高性能计算系统的经济有效替代方案。然而,电网的计算资源通常与广域网相当远的相当远,导致相当大的通信延迟。因此,在这些网格系统中有效地将作业分配给用于负载平衡的计算资源。在本文中,提出了用于计算网格的两个基于价格的动态作业分配方案,其目的是最小化网格用户作业的执行成本。一个方案尝试提供系统 - 最佳解决方案,以便在网格系统中执行所有作业的预期价格最小化,而另一个试图提供工作最佳解决方案,以便系统中的所有作业相同的大小将被收取大约相同的预期价格与分配的计算机分配以提供公平性。使用模拟将所提出的动态方案的性能与静态作业分配方案进行比较。

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