An Economy Driven Resource Allocation Middleware for Grid Workflow

Pengcheng Xiong, Yushun Fan
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Abstract

In order to accomplish high performance on grid workflow, grid resource management system needs a smart and swift resource allocation middleware. In this paper, we study the economy driven resource allocation problem based on market model of grid resource management architectures. We model the problem as the multiple choice knapsack problem (MCKP) and design the resource allocation optimization algorithm to minimize the average turnaround time of the grid workflow. The complexity analysis shows that the optimization algorithm leads to more efficient resource allocation than many current algorithms. The algorithm is also proved to be especially appropriate since the problem's own characteristics can accelerate the algorithm implementation process.
网格工作流中经济驱动的资源分配中间件
为了实现网格工作流的高性能,网格资源管理系统需要一个智能、快速的资源分配中间件。本文研究了基于网格资源管理体系结构的市场模型的经济驱动的资源配置问题。我们将该问题建模为多选择背包问题(MCKP),并设计了资源分配优化算法以最小化网格工作流的平均周转时间。复杂度分析表明,该优化算法比现有的许多算法具有更高的资源分配效率。由于问题本身的特点可以加快算法的实现过程,因此证明该算法是特别适用的。
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