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Dynamic load balancing experiments in a grid

机译:网格中的动态负载平衡实验

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Connected world-widely distributed computers and data systems establish a global source of processing power and data, called, a grid. Key properties of a grid are the fact that computers providing processing power may connect and disconnect at any time, and that demands for processing power may highly fluctuate over time. This has raised the need for the development of applications that are robust against changing circumstances. In (A. M. Dobber et al., 2004) the impact of fluctuations in processing speeds on running times has been investigated, and it was found that dynamic load balancing methods provide a promising means to deal with the ever-changing environment in the grid. In this paper we demonstrate with extensive experiments in a real grid environment, Planetlab, that dynamic load balancing based on predictions via exponential smoothing indeed lead to significant reductions in running times of parallel applications in a randomly changing grid environment.
机译:连接的世界广泛分布式的计算机和数据系统建立了一个全球处理能力和数据来源,称为网格。 网格的关键属性是提供处理能力的计算机可以随时连接和断开,并且对处理能力的要求可能会随着时间的推移高度波动。 这提出了对改变变化环境的兴奋的发展的需要。 (A. M. Dobber等,2004)已经研究了在运行时间上处理加工速度波动的影响,发现动态负载平衡方法提供了处理网格中不断变化的环境的承诺手段。 在本文中,我们在实际网格环境中进行了广泛的实验,PlanetLab,基于指数平滑的预测的动态负载平衡确实导致随机改变的网格环境中并行应用的运行时间显着降低。

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