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Optimal resource allocation for multiqueue systems with a shared server pool

机译:具有共享服务器池的多队列系统的最佳资源分配

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We study optimal allocation of servers for a system with multiple service facilities and with a shared pool of servers. Each service facility poses a constraint on the maximum expected sojourn time of a job. A central decision maker can dynamically allocate servers to each facility, where adding more servers results in faster processing speeds but against higher utilization costs. The objective is to dynamically allocate the servers over the different facilities such that the sojourn-time constraints are met at minimal costs. This situation occurs frequently in practice, for example, in Grid systems for real-time image processing (iris scans, fingerprints). We model this problem as a Markov decision process and derive structural properties of the relative value function. These properties, which are hard to derive for multidimensional systems, give a full characterization of the optimal policy. We demonstrate the effectiveness of these policies by extensive numerical experiments.
机译:我们研究具有多个服务设施和共享服务器池的系统的服务器最佳分配。每个服务设施都对工作的最大预期停留时间施加了限制。中央决策者可以为每个设施动态分配服务器,在其中添加更多的服务器可以提高处理速度,但不会增加使用成本。目的是在不同的设施上动态分配服务器,以便以最小的成本满足逗留时间的限制。这种情况实际上在实践中经常发生,例如,在用于实时图像处理(虹膜扫描,指纹)的Grid系统中。我们将此问题建模为马尔可夫决策过程,并得出相对价值函数的结构性质。这些对于多维系统来说很难获得的属性,充分说明了最优策略。我们通过大量的数值实验证明了这些政策的有效性。

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