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FEASIBILITY STUDY OF A SCALABLE OPTICAL INTERCONNECTION NETWORK FOR MASSIVELY PARALLEL PROCESSING SYSTEMS

机译:大规模并行处理系统的可扩展光学互连网络的可行性研究

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The theoretical modeling of a novel topology for scalable optical interconnection networks, called optical multimesh hypercube (OMMH), is developed to predict size, bit rate, bit-error rate, power budget, noise, efficiency, interconnect distance, pixel density, and misalignment sensitivity. The numerical predictions are validated with experimental data from commercially available products to assess the effects of various thermal, system, and geometric parameters on the behavior of the sample model. OMMH is a scalable network architecture that combines positive features of the hypercube (small diameter, regular, symmetric, and fault tolerant) and the mesh (constant node degree and size scalability). The OMMH is implemented by a free-space imaging system incorporated with a space-invariant hologram for the hypercube links and fiber optics to provide the mesh connectivity. The results of this work show that the free-space links can operate at 368 Mbits/s and the fiber-based links at 228 Mbits/s for a bit-error rate of 10(-17) per channel. The predicted system size for 32 nodes in the OMMH is 4.16 mm x 4.16 mm X 3.38 cm. Using 16-bit, bit-parallel transmission per node, the system can operate at a bit rate of up to 5.88 Gbits/s for a size of 1.04 cm x 1.04 cm x 3.38 cm. [References: 21]
机译:建立了可伸缩光互连网络的新型拓扑的理论模型,称为光多网格超立方体(OMMH),以预测尺寸,比特率,误码率,功率预算,噪声,效率,互连距离,像素密度和未对准灵敏度。数值预测已使用可商购产品的实验数据进行了验证,以评估各种热,系统和几何参数对样品模型行为的影响。 OMMH是一种可扩展的网络体系结构,结合了超立方体(小直径,规则,对称和容错)和网格(恒定的节点度和大小可扩展性)的积极特性。 OMMH由自由空间成像系统实现,该系统结合了用于超立方体链接和光纤的空间不变全息图,以提供网格连接。这项工作的结果表明,自由空间链接可以以368 Mbit / s的速度运行,而基于光纤的链接可以以228 Mbit / s的速度运行,每通道的误码率为10(-17)。 OMMH中32个节点的预计系统大小为4.16 mm x 4.16 mm x 3.38 cm。通过每个节点使用16位,位并行传输,系统可以以高达5.88 Gbits / s的比特率运行,尺寸为1.04 cm x 1.04 cm x 3.38 cm。 [参考:21]

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