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Design and analysis of a 3-dimensional cluster multicomputer architecture using optical interconnection for petaFLOP computing.

机译:使用petaFLOP计算的光学互连的3维群集多计算机体系结构的设计和分析。

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摘要

In this dissertation, the design and analyses of an extremely scalable distributed multicomputer architecture, using optical interconnects, that has the potential to deliver in the order of petaFLOP performance is presented in detail. The design takes advantage of optical technologies, harnessing the features inherent in optics, to produce a 3D stack that implements efficiently a large, fully connected system of nodes forming a true 3D architecture. To adopt optics in large-scale multiprocessor cluster systems, efficient routing and scheduling techniques are needed. To this end, novel self-routing strategies for all-optical packet switched networks and on-line scheduling methods that can result in collision free communication and achieve real time operation in high-speed multiprocessor systems are proposed. The system is designed to allow failed/faulty nodes to stay in place without appreciable performance degradation. The approach is to develop a dynamic communication environment that will be able to effectively adapt and evolve with a high density of missing units or nodes. A joint CPU/bandwidth controller that maximizes the resource allocation in this dynamic computing environment is introduced with an objective to optimize the distributed cluster architecture, preventing performance/system degradation in the presence of failed/faulty nodes. A thorough analysis, feasibility study and description of the characteristics of a 3-Dimensional multicomputer system capable of achieving 100 teraFLOP performance is discussed in detail. Included in this dissertation is throughput analysis of the routing schemes, using methods from discrete-time queuing systems and computer simulation results for the different proposed algorithms. A prototype of the 3D architecture proposed is built and a test bed developed to obtain experimental results to further prove the feasibility of the design, validate initial assumptions, algorithms, simulations and the optimized distributed resource allocation scheme. Finally, as a prelude to further research, an efficient data routing strategy for highly scalable distributed mobile multiprocessor networks is introduced.
机译:在本文中,详细介绍了一种具有高度可扩展性的分布式多计算机体系结构的设计和分析,该体系结构使用光学互连,具有按petaFLOP性能顺序交付的潜力。该设计利用光学技术的优势,利用光学固有的功能,来生成3D堆栈,该堆栈有效地实现了大型的,完全连接的节点系统,形成了真正的3D架构。为了在大型多处理器集群系统中采用光学器件,需要有效的路由和调度技术。为此,提出了用于全光分组交换网络的新颖的自路由策略和在线调度方法,其可以导致无冲突通信并在高速多处理器系统中实现实时操作。该系统旨在允许发生故障的节点保持原状,而不会明显降低性能。该方法是开发一种动态通信环境,该环境将能够以高密度的丢失单元或节点有效地适应和发展。引入了在此动态计算环境中最大化资源分配的联合CPU /带宽控制器,其目的是优化分布式集群体系结构,防止出现故障/故障节点时性能/系统性能下降。详细讨论了能够实现100 teraFLOP性能的3维多计算机系统特性的全面分析,可行性研究和描述。本论文包括路由选择方案的吞吐量分析,使用离散时间排队系统的方法以及针对不同算法的计算机仿真结果。构建了所提出的3D体系结构的原型,并开发了测试床以获得实验结果,以进一步证明设计的可行性,验证初始假设,算法,仿真和优化的分布式资源分配方案。最后,作为进一步研究的序幕,介绍了一种用于高度可扩展的分布式移动多处理器网络的有效数据路由策略。

著录项

  • 作者

    Okorafor, Ekpe Apia.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Electronics and Electrical.;Computer Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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