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ARTEMIS: 40-Gb/s all-optical self-routing node and network architecture employing asynchronous bit and packet-level optical signal processing

机译:aRTEmIs:采用异步位和数据包级光信号处理的40-Gb / s全光自路由节点和网络架构

摘要

A 40-Gb/s asynchronous self-routing network and node architecture that exploits bit and packet level optical signal processing to perform synchronization, forwarding, and switching in the optical domain is presented. Optical packets are self-routed on a hop-by-hop basis through the network by using stacked optical tags, each representing a specific optical node. Each tag contains necessary control signals for configuring the node-switching matrix and forwarding each packet to the appropriate outgoing link and onto the next hop. In order to investigate the feasibility of their approach physical-layer simulations are performed, modeling each optical subsystem of the node showing acceptable signal quality and end-to-end bit error rates. In the All-optical self-RouTer EMploying bIt and packet-level procesSing (ARTEMIS) control plane, a timed/delayed resource reservation-based signaling scheme is employed combined with a load-balancing feedback-based contention-avoidance mechanism that can guarantee a high performance in terms of blocking probability and end-to-end delay. © 2006 IEEE.
机译:提出了一种40 Gb / s异步自路由网络和节点体系结构,该体系结构使用位和数据包级别的光信号处理来在光域中执行同步,转发和交换。通过使用堆叠的光学标签(每个光学标签代表一个特定的光学节点),光分组通过网络以逐跳为基础进行自我路由。每个标签包含必要的控制信号,用于配置节点交换矩阵并将每个数据包转发到适当的出站链路并到达下一跳。为了研究其方法的可行性,进行了物理层仿真,对节点的每个光学子系统进行建模,以显示可接受的信号质量和端到端误码率。在全光自路由部署和分组级处理(ARTEMIS)控制平面中,采用了基于时间/延迟资源预留的信令方案,并结合了基于负载平衡反馈的竞争避免机制,可以确保在阻塞概率和端到端延迟方面具有高性能。 ©2006 IEEE。

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