实时系统中最小化网络通信的下界算法

Cecilia Ekelin, Jan Jonsson
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引用次数: 7

摘要

在本文中,我们提出了一种伪多项式时间下界算法来解决分布式系统中实时任务的分配和调度问题,使网络通信最小化。该算法的关键特征是将任务分配问题转化为图的k-切问题。对于固定k,已知可以在多项式时间内解决。实验表明,由我们的算法计算的下界实际上在高达89%的情况下是最优的,并且平均将整体优化算法的速度提高了两倍。
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A lower-bound algorithm for minimizing network communication in real-time systems
In this paper, we propose a pseudo-polynomial-time lower-bound algorithm for the problem of assigning and scheduling real-time tasks in a distributed system such that the network communication is minimized The key feature of our algorithm is translating the task assignment problem into the so called k-cut problem of a graph, which is known to be solvable in polynomial time for fixed k. Experiments show that the lower bound computed by our algorithm in fact is optimal in up to 89% of the cases and increases the speed of an overall optimization algorithm by a factor of two on average.
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