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Analysis of a novel class of fault-tolerant multistage interconnection networks.

机译:分析一类新型的容错多级互连网络。

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摘要

Multistage interconnection networks (MINs) have become an important subset of the interconnection networks which are used to communicate between processors and memory modules for large scale multiprocessor systems. Unfortunately, unique path MINs lack fault tolerance. In this dissertation, a novel scheme for constructing fault-tolerant MINs is presented. We first partition the given MINs into even sized partitions and show some fault-tolerant properties of the partitioned MINs. Using three stages of multiplexers/demultiplexers, an augmenting scheme which takes advantage of locality in program execution is then proposed to further improve the fault-tolerant ability and performance of the partitioned MINs. The topological characteristics of augmented partitioned multistage interconnection networks (APMINs) are analyzed. Based on switch fault model, simulations have been carried out to evaluate the full access and dynamic full access capabilities of APMINs. The results show that the proposed scheme significantly improves the fault-tolerant capability of MINs. Cost effectiveness of this new scheme in terms of cost, full access, dynamic full access, locality, and average path length has also been evaluated. It has been shown that this new scheme is more cost effective for high switch failure rate and/or large size networks. Analytical modeling techniques have been developed to evaluate the performance of AP-Omega network and AP-Omega network-based multiprocessor systems. The performance of Omega, modified Omega, and AP-Omega networks in terms of processor utilization and processor waiting time have been compared and the results show that the new scheme indeed, improves the performance both in network level and in system level. Finally, based on the reliability of serial/parallel network components, models for evaluating the terminal reliability and the network reliability of AP-Omega network using upper and lower bound measures have also been proposed and the results show that applying locality improve APMINs' reliability.
机译:多级互连网络(MIN)已成为互连网络的重要子集,用于在大型多处理器系统的处理器和内存模块之间进行通信。不幸的是,唯一的路径MIN缺乏容错能力。本文提出了一种构建容错MIN的新方案。我们首先将给定的MIN划分为均匀大小的分区,并显示已划分的MIN的某些容错属性。然后,使用三级复用器/解复用器,提出了一种在程序执行中利用局部性的增强方案,以进一步提高分区MIN的容错能力和性能。分析了扩展分区多级互连网络(APMIN)的拓扑特征。基于开关故障模型,已经进行了仿真以评估APMIN的完全访问权限和动态完全访问功能。结果表明,该方案显着提高了MIN的容错能力。此新方案在成本,完全访问权限,动态完全访问权限,位置和平均路径长度方面的成本效益也得到了评估。已经表明,这种新方案对于高交换机故障率和/或大型网络更具成本效益。已经开发了分析建模技术来评估AP-Omega网络和基于AP-Omega网络的多处理器系统的性能。比较了Omega,改良的Omega和AP-Omega网络在处理器利用率和处理器等待时间方面的性能,结果表明,该新方案的确在网络级别和系统级别上都提高了性能。最后,基于串行/并行网络组件的可靠性,提出了使用上限和下限度量评​​估AP-Omega网络的终端可靠性和网络可靠性的模型,结果表明应用局部性可以提高APMIN的可靠性。

著录项

  • 作者

    Huang, Chien-Jen.;

  • 作者单位

    Florida Atlantic University.;

  • 授予单位 Florida Atlantic University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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