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Routing algorithms for the emerging topologies in HPC and data center networks.

机译:HPC和数据中心网络中新兴拓扑的路由算法。

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摘要

The computing capabilities of the high performance computing systems have increased manyfold over the span of years following Moores law and have achieved petascale recently. Following the trend, the computation cababilities are expected to reach exascale by the end of this decade. The strive for exascale computing poses significant challenge on the processor system design as well as the design of network architectures. Several network optimizations pertaining to topology and routing have been devised for the existing architectures and new architectures are also being proposed to meet the design goals of the next generation supercomputers. As an important architectural component, new topologies are being proposed and coming into existence. Topologies exhibiting excellent properties might suffer from sub-optimal performance if the routing schemes supported on them are not able to utilize the full potential. An effective routing scheme that fully utilizes the network resources of a topology is the key to meeting some of the design goals of network architectures. The goal of my research is to investigate the emerging topologies and provide optimized routing schemes that utilize the network efficiently with an aim to provide high throughput and low latency communications. In particular, I consider fat-trees and their slimmed versions, and the recently proposed jellyfish topology and propose effective routing schemes on these topologies. The developed schemes show improvements over the existing routing schemes.
机译:遵循摩尔斯定律,高性能计算系统的计算能力在过去的几年中增长了许多倍,并在最近达到了千万亿字节。随着这一趋势的发展,计算能力有望在本十年末达到百亿亿美元。百亿亿次计算的努力对处理器系统设计以及网络体系结构设计提出了重大挑战。已经针对现有架构设计了与拓扑和路由有关的几种网络优化,并且还提出了新架构以满足下一代超级计算机的设计目标。作为重要的体系结构组件,提出了新的拓扑结构并应运而生。如果拓扑结构所支持的路由方案无法充分利用其潜力,那么表现出优异性能的拓扑结构可能会遭受次优性能的困扰。充分利用拓扑网络资源的有效路由方案是满足网络体系结构某些设计目标的关键。我研究的目的是研究新兴的拓扑并提供有效利用网络的优化路由方案,以提供高吞吐量和低延迟的通信。特别是,我考虑了胖树及其瘦身版本,以及最近提出的水母拓扑,并针对这些拓扑提出了有效的路由方案。所开发的方案显示出对现有路由方案的改进。

著录项

  • 作者

    Mahaptra, Santosh.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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