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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >A class of highly scalable optical crossbar-connected interconnection networks (SOCNs) for parallel computing systems
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A class of highly scalable optical crossbar-connected interconnection networks (SOCNs) for parallel computing systems

机译:用于并行计算系统的一类高度可扩展的光交叉连接互连网络(SOCN)

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A class of highly scalable interconnect topologies called the Scalable Optical Crossbar-Connected Interconnection Networks (SOCNs) is proposed. This proposed class of networks combines the use of tunable Vertical Cavity Surface Emitting Lasers (VCSEL's), Wavelength Division Multiplexing (WDM) and a scalable, hierarchical network architecture to implement large-scale optical crossbar based networks. A free-space and optical waveguide-based crossbar interconnect utilizing tunable VCSEL arrays is proposed for interconnecting processor elements within a local cluster. A similar WDM optical crossbar using optical fibers is proposed for implementing intercluster crossbar links. The combination of the two technologies produces large-scale optical fan-out switches that could be used to implement relatively low cost, large scale, high bandwidth, low latency, fully connected crossbar clusters supporting up to hundreds of processors. An extension of the crossbar network architecture is also proposed that implements a hybrid network architecture that is much more scalable. This could be used to connect thousands of processors in a multiprocessor configuration while maintaining a low latency and high bandwidth. Such an architecture could be very suitable for constructing relatively inexpensive, highly scalable, high bandwidth, and fault-tolerant interconnects for large-scale, massively parallel computer systems. This paper presents a thorough analysis of two example topologies, including a comparison of the two topologies to other popular networks. In addition, an overview of a proposed optical implementation and power budget is presented, along with analysis of proposed media access control protocols and corresponding optical implementation.
机译:提出了一类高度可扩展的互连拓扑,称为可扩展光交叉连接互连网络(SOCN)。提出的这类网络结合了可调谐垂直腔表面发射激光器(VCSEL),波分复用(WDM)和可扩展的分层网络体系结构的使用,以实现基于大规模光交叉开关的网络。提出了使用可调谐VCSEL阵列的基于自由空间和基于光波导的交叉开关互连,用于互连本地群集中的处理器元件。提出了一种类似的使用光纤的WDM光交叉开关,以实现集群间交叉开关链接。两种技术的结合产生了大规模的光纤扇出交换机,可用于实现相对低成本,大规模,高带宽,低延迟,完全连接的交叉开关集群,最多支持数百个处理器。还提出了纵横制网络架构的扩展,该扩展实现了可扩展性更高的混合网络架构。这可用于连接多处理器配置中的数千个处理器,同时保持低延迟和高带宽。这种体系结构可能非常适合于为大规模,大规模并行计算机系统构建相对便宜,高度可伸缩,高带宽和容错的互连。本文对两种示例拓扑进行了全面的分析,包括将两种拓扑与其他流行网络进行比较。此外,还介绍了提议的光学实现和功率预算,以及对提议的媒体访问控制协议和相应光学实现的分析。

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