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Simulation of an optical network system for a space based high performance computer system

机译:基于空间的高性能计算机系统光网络系统仿真

摘要

An important future addition for a Space Based High Performance Computer System is a high-speed optical network for faster data transmission. The purpose of this project is to research and simulate next generation computing applications on high-speed optical networks. The research has been performed in the System Application context involving embedded high-performance computing applications and optical networking technology to guide future research and development of advanced optical devices. The research addresses advanced processing system issues in bandwidth, latency, protocol, topology, and fault tolerance in relation to high performance systems. The reference distributed computer, provided by BAE SYSTEMS in Nashua New Hampshire, consists of multiple processing nodes connected by a Myrinet copper network. The advanced embedded computing applications include Space-Based Radar Corner Turn processing, Synthetic Aperture Radar Back End processing, and Random Workload software models. Two Optical networks have been developed as part of this research to replace the reference Myrinet network, a Ring based network and a Star based network. Both networks employ redundancy to provide an alternate direct optical path between each pair of nodes. Of these networks the Ring design failed due to packet collisions and due to the need for a complex networking protocol. The Star Optical network design performed well in comparison to the reference network design. Overall, network latency was reduced and the internode data distribution speed was dramatically increased. Also, the memory usage for each of the three software models was analyzed and each has definite bound that will help future development. Although the results of this research are favorable, the eventual future design and implementation of a Space Based High Performance Computer System would benefit from additional research on a number of topics.
机译:基于空间的高性能计算机系统在未来的一项重要重要补充是可实现更快数据传输的高速光网络。该项目的目的是研究和模拟高速光网络上的下一代计算应用程序。该研究是在涉及嵌入式高性能计算应用程序和光网络技术的系统应用环境中进行的,以指导未来高级光学设备的研究和开发。该研究解决了与高性能系统相关的高级处理系统问题,包括带宽,延迟,协议,拓扑和容错能力。由位于新罕布什尔州纳舒厄的BAE SYSTEMS提供的参考分布式计算机,由通过Myrinet铜网络连接的多个处理节点组成。先进的嵌入式计算应用程序包括:天基雷达转弯处理,合成孔径雷达后端处理和随机工作量软件模型。作为本研究的一部分,已经开发了两个光网络来代替参考Myrinet网络,基于环的网络和基于星的网络。两个网络都采用冗余以在每对节点之间提供备用的直接光路。在这些网络中,由于分组冲突和对复杂网络协议的需求,Ring设计失败。与参考网络设计相比,Star Optical网络设计表现良好。总体而言,减少了网络延迟,并大大提高了节点间数据分发速度。此外,还分析了三种软件模型中每种模型的内存使用情况,每种模型都有一定的界限,这将有助于将来的开发。尽管这项研究的结果是令人满意的,但是基于太空的高性能计算机系统的最终未来设计和实现将受益于对许多主题的额外研究。

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