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A petabit photonic packet switch (P/sup 3/S)

机译:PB光子分组交换机(P / sup 3 / S)

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This paper presents a new petabit photonic packet switch (P/sup 3/S) architecture that is highly scalable both in dimension and capacity while maintaining high system performances. Using a new multidimensional photonic multiplexing scheme that includes space, time, wavelength, and subcarrier domains, we propose a photonic switch fabric based on a 3-stage Clos network to provide scalable large-dimension photonic interconnections with nanosecond reconfiguration speed. Packet buffering is implemented electronically at the input and output port controllers, allowing the central photonic switch fabric to transport high-speed optical signals without electrical-to-optical conversion. Optical time division multiplexing (OTDM) technology further scales port speed beyond electronic speed up to 160 Gbits/s to minimize the fiber connections. To solve output contention, we propose a new arbitration scheme, called frame-based exhaustive matching (FEM), using extended frames to aggregate cells from different incoming lines. The extended frame relaxes the stringent arbitration time constraint at a 160 Gbit/s port speed. Based on the FEM scheme in the proposed architecture, a 6400 /spl times/ 6400 switch with a total capacity of 1.024 petabit/s can be achieved with throughput close to 100% under various traffic conditions.
机译:本文提出了一种新的千兆比特光子分组交换机(P / sup 3 / S)架构,该架构在尺寸和容量上都具有高度可扩展性,同时又能保持较高的系统性能。使用包含空间,时间,波长和子载波域的新的多维光子多路复用方案,我们提出了一种基于3级Clos网络的光子交换结构,以提供具有纳秒级重构速度的可扩展大尺寸光子互连。数据包缓冲在输入和输出端口控制器上以电子方式实现,从而允许中央光子交换结构无需电光转换即可传输高速光信号。光学时分多路复用(OTDM)技术进一步将端口速度扩展到超过电子速度的最大160 Gbits / s,以最大程度地减少光纤连接。为了解决输出争用,我们提出了一种新的仲裁方案,称为基于帧的穷举匹配(FEM),该方案使用扩展的帧来聚合来自不同传入线路的信元。扩展帧以160 Gbit / s的端口速度放宽了严格的仲裁时间约束。基于所提出体系结构中的FEM方案,可以实现6400 / spl times / 6400交换机,总容量为1.024 petabit / s,在各种流量条件下的吞吐量接近100%。

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