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A fully implemented 12 /spl times/ 12 data vortex optical packet switching interconnection network

机译:完整实现的12个/ spl次/ 12个数据涡旋光分组交换互连网络

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摘要

A fully functional optical packet switching (OPS) interconnection network based on the data vortex architecture is presented. The photonic switching fabric uniquely capitalizes on the enormous bandwidth advantage of wavelength division multiplexing (WDM) wavelength parallelism while delivering minimal packet transit latency. Utilizing semiconductor optical amplifier (SOA)-based switching nodes and conventional fiber-optic technology, the 12-port system exhibits a capacity of nearly 1 Tb/s. Optical packets containing an eight-wavelength WDM payload with 10 Gb/s per wavelength are routed successfully to all 12 ports while maintaining a bit error rate (BER) of 10/sup -12/ or better. Median port-to-port latencies of 110 ns are achieved with a distributed deflection routing network that resolves packet contention on-the-fly without the use of optical buffers and maintains the entire payload path in the optical domain.
机译:提出了一种基于数据涡旋体系结构的全功能光分组交换(OPS)互连网络。光子交换结构独特地利用了波分复用(WDM)波长并行性的巨大带宽优势,同时提供了最小的数据包传输等待时间。利用基于半导体光放大器(SOA)的交换节点和传统的光纤技术,该12端口系统的容量接近1 Tb / s。包含八波长WDM有效负载且每个波长10 Gb / s的光分组成功地路由到所有12个端口,同时保持10 / sup -12 /或更高的误码率(BER)。分布式偏转路由网络可实现110 ns的中值端口到端口延迟,该网络无需使用光学缓冲器即可即时解决数据包争用,并在光域中保持整个有效负载路径。

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