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Mean Field Calculation for Optical Grid Dimensioning

机译:网格尺寸的平均场计算

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摘要

For traditional optical network dimensioning, a plethora of algorithms exists to design the amount of network resources required to accommodate a given amount of traffic, expressed as a (source, destination)-based traffic matrix. In optical Grid dimensioning, however, the anycast principle applies: Grid users do not really care where exactly their tasks (Grid jobs) end up being executed. Thus, the destination of traffic is not known beforehand and traditional dimensioning algorithms are not applicable. In this paper we propose a mean field calculation method to analytically derive the traffic matrix for given job arrival intensities at the originating Grid sites (the sources). We also indicate how it can be integrated in a stepwise dimensioning approach to compute not only the amount of network resources, but also Grid resources (computational and/or storage). Hence it forms part of a solution for Grid dimensioning: determining how many servers to provide, where to place them, and which network to install for interconnecting server sites and users generating Grid jobs.
机译:对于传统的光网络规模确定,存在大量算法来设计容纳给定流量的所需网络资源的数量,表示为基于(源,目的地)的流量矩阵。但是,在光学网格尺寸标注中,任播原则适用:网格用户并不真正在乎最终在哪里执行他们的任务(网格作业)。因此,流量的目的地事先未知,传统的尺寸标注算法也不适用。在本文中,我们提出了一种平均场计算方法,以分析得出给定作业到达强度的原始网格站点(源)处的交通矩阵。我们还指出了如何将其集成到逐步确定规模的方法中,从而不仅可以计算网络资源的数量,还可以计算网格资源(计算和/或存储)。因此,它构成了Grid尺寸解决方案的一部分:确定要提供多少服务器,将它们放置在哪里以及要安装哪个网络以互连服务器站点和生成Grid作业的用户。

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