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New nodal design for high throughput data vortex optical interconnection network

机译:高吞吐量数据涡旋光互连网络的新型节点设计

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This paper proposes a new three input nodal structure within the data vortex packet switched interconnection network. With additional optical switches, the modified architecture allows for two input packets in addition to a buffered packet to be processed simultaneously within a routing node. A much higher degree of parallel processing is allowed in comparison to previously proposed enhanced buffer node with two input processing or the original network node with single input processing. Unlike the previous contention prevention mechanism, the new network operates by introducing the packet blocking within the node if no exit path is available. This eliminates the traffic control signaling and the strict timing alignment associated with the routing paths which simplifies the overall network implementation. This study shows that both data throughput and the latency performance are improved significantly within the new network. The study compares the three input node with the two input node as well as the original single input data vortex node. Due to additional switch count and nodal cost, networks that support the same I/O ports and of the same cost are compared for a fair comparison. The limitation introduced by the blocking rate is also addressed. The study has shown that under reasonable traffic and network condition, the blocking rate can be kept very low without introducing complex controls and management for dropped packets. As previous architectures require operation under saturation point, the proposed architecture should also operate at reasonable level of network redundancy to avoid excessive packet drop. This study provides guidance and criteria on the proposed three input network design and operation for feasible applications. The proposed network provides an attractive alternative to the previous architectures for higher throughput and lower latency performance.
机译:本文提出了数据涡流分组交换互连网络中的一种新的三输入节点结构。使用附加的光开关,修改后的体系结构除了允许在路由节点内同时处理缓冲的数据包之外,还允许两个输入数据包。与先前提出的具有两个输入处理的增强型缓冲节点或具有单个输入处理的原始网络节点相比,允许更高程度的并行处理。与先前的竞争防止机制不同,如果没有出口路径可用,新网络将通过在节点内引入数据包阻塞来进行操作。这消除了与路由路径相关联的流量控制信令和严格的时序对齐,从而简化了整个网络的实现。这项研究表明,新网络中的数据吞吐量和延迟性能都得到了显着提高。该研究将三个输入节点与两个输入节点以及原始的单个输入数据涡旋节点进行了比较。由于额外的交换机数量和节点成本,将对支持相同I / O端口和成本相同的网络进行比较,以进行公平比较。还解决了阻塞率所带来的限制。研究表明,在合理的流量和网络条件下,可以将阻塞率保持在非常低的水平,而无需对丢失的数据包进行复杂的控制和管理。由于以前的体系结构要求在饱和点下运行,因此建议的体系结构还应在合理的网络冗余级别下运行,以避免过多的数据包丢失。这项研究为拟议的三输入网络设计和运行提供了指导和标准,以实现可行的应用。拟议的网络为以前的体系结构提供了一个有吸引力的替代方案,以实现更高的吞吐量和更低的延迟性能。

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