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A case for TCP Vegas in high-performance computational grids

机译:高性能计算网格中TCP Vegas的案例

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摘要

Computational grids such as the Information Power Grid (Johnston et al., 1999), Particle Physics Data Grid , and Earth System Grid depend on TCP to provide reliable communication between nodes across a wide-area network (WAN). Of the available TCP implementations, TCP Reno and its variants are the most widely deployed; however, Reno's performance in computational grids is mediocre at best. Due to conflicting results in the evaluation of TCP implementations, we present a detailed simulation study that unifies the conflicting results and demonstrates the limitations of earlier work. We focus on the two most debated versions of TCP-Reno and Vegas. Using real traffic distributions, we show that Vegas performs well over modern high-performance links and better than Reno with the proper selection of the Vegas parameters /spl alpha/ and /spl beta/. Our results exhibit ways to significantly enhance the performance of distributed computational grids that rely on TCP.
机译:诸如信息电源网格(Johnston等,1999),粒子物理数据网格和地球系统网格之类的计算网格都依赖TCP来提供跨广域网(WAN)的节点之间的可靠通信。在可用的TCP实现中,TCP Reno及其变体的部署最为广泛。但是,里诺在计算网格中的性能充其量只是中等水平。由于在TCP实施的评估中结果相互矛盾,我们提供了详细的模拟研究,该研究统一了冲突的结果并证明了早期工作的局限性。我们专注于TCP-Reno和Vegas争议最大的两个版本。使用实际的流量分布,我们显示出在适当的选择Vegas参数/ spl alpha /和/ spl beta /的情况下,Vegas在现代高性能链接上的性能要好于Reno。我们的结果展示了显着提高依赖TCP的分布式计算网格的性能的方法。

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