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Modeling and analysis of FDDI-based and hippi-based fiber optic communications links for distributed, high-performance computer systems

机译:分布式高性能计算机系统的基于FDDI和基于嬉皮的光纤通信链路的建模和分析

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The paper analyses the use of the Fiber Distributed Data Interface (FDDI) and the High Performance Parallel Interface (HIPPI) (representative for Mbitls and Gbitls fiber-optic communication links) as a communication network for distributed, parallel computing systems. The evaluation of the FDDI throughput and delay is obtained by analytic simulation and by analysis of Stochastic Petri Net (SPN) model parameters. Further, the paper deals with the latency and bandwidth in distributed, high-performance (Mbit1s, Gbit1s, and future Tbit1s) systems and shows that distributed, high-performance computing and networking systems have forced us to deal with the propagation delay within the system due to the limited speed of light. 1 2 3 4indicate that the user must pay attention to his file sizes and how latency win affect his applications. Models and results can be used for computer aided modeling, analysis and design of modem communication system, based on parallel computers and Mbitl's or Gbitls fiber optic communication links.
机译:本文分析了光纤分布式数据接口(FDDI)和高性能并行接口(HIPPI)(代表Mbitls和Gbitls光纤通信链路)作为分布式并行计算系统的通信网络的用途。 FDDI吞吐量和延迟的评估是通过分析模拟和通过分析随机Petri网(SPN)模型参数来获得的。此外,本文还讨论了分布式高性能(Mbit1s,Gbit1s和未来的Tbit1s)系统中的延迟和带宽,并表明分布式高性能计算和网络系统迫使我们应对系统内的传播延迟。由于光速有限。 1 2 3 4表示用户必须注意他的文件大小以及延迟赢得如何影响他的应用程序。基于并行计算机和Mbitl或Gbitl光纤通信链路,模型和结果可用于计算机辅助建模,分析和设计调制解调器通信系统。

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