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Terahipas: a modular and expandable terabit/second hierarchically multiplexing photonic ATM switch architecture

机译:Terahipas:模块化和可扩展的千兆位/秒分层复用光子ATM交换机体系结构

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摘要

A terabit/second hierarchically multiplexing photonic asynchronous transfer mode (ATM) switch network architecture, called Terahipas, is proposed. It combines the advantages of photonics (a large bandwidth for transport of cells) and electronics (advanced logical functions for controlling, processing, and routing). It uses a hierarchical photonic multiplexing structure in which several tens of channels with a relatively low bit rate, say 2.4 Gb/s, are first time-multiplexed on an optical highway by shrinking the interval between optical pulses, then a number of optical highways are wavelength-multiplexed (or space-division multiplexed). As a result, the switch capacity can be expanded from the order of 100 Gb/s to the order of 10 Tb/s in a modular fashion. A new implementation scheme for cell buffering is used for eliminating the bottleneck when receiving and storing concurrent optical cells at bit rates as high as 100 Gb/s. This new architecture can serve as the basis of a modular, expandable, high-performance ATM switching system for future broad band integrated service digital networks (B-ISDN's).
机译:提出了一种称为Terahipas的太比特/秒分层多路复用光子异步传输模式(ATM)交换网络体系结构。它结合了光子学(用于传输细胞的大带宽)和电子学(用于控制,处理和路由的高级逻辑功能)的优点。它使用分层光子复用结构,其中首先通过缩小光脉冲之间的间隔在光高速公路上对几十个比特率相对较低的信道(例如2.4 Gb / s)进行时分复用,然后在光高速公路上进行复用。波长复用(或空分复用)。结果,可以以模块化的方式将交换容量从100 Gb / s的数量级扩展到10 Tb / s的数量级。一种用于信元缓冲的新实现方案用于消除以高达100 Gb / s的比特率接收和存储并发光学信元时的瓶颈。这种新的体系结构可以用作将来的宽带集成服务数字网络(B-ISDN)的模块化,可扩展的高性能ATM交换系统的基础。

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