Technology for ATM multigigabit/s switches

L. A. Merayo, P. Plaza, P. Chas, G. Piccinini, M. Zamboni, M. Barbini
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引用次数: 4

Abstract

It is generally accepted that the reasons for selecting ATM as the switching and multiplexing method for B-ISDN are the advantages the bandwidth on demand philosophy offers: flexibility and statistical gain. The main benefit of the throughput improvement that is possible to achieve with link rates of Gb/s in ATM is the exploitation of statistical gain with bursty high peak rate sources. But not only statistical gain justifies the necessity for such advanced technology. High speed ATM switching systems take advantage of the reduction of the number of interface devices (due to multiplexing) and also the number of stages in the ATM switching network, obtaining better figures in the cost/performance ratio. This paper describes an ATM switch that exploits parallelism and segmentation to perform very high speed ATM switching. With this characteristic it is possible to switch more than 2.5 Gb/s per input/output using CMOS and BiCMOS technologies (present implementation) and beyond with more advanced BiCMOS/GaAs.
ATM多千兆交换机技术
人们普遍认为,选择ATM作为B-ISDN的交换和复用方法的原因是带宽随需应变哲学提供的优势:灵活性和统计增益。在ATM中使用Gb/s的链路速率可能实现的吞吐量改进的主要好处是利用突发高峰值速率源的统计增益。但不仅仅是统计上的收益证明了这种先进技术的必要性。高速ATM交换系统利用了ATM交换网络中接口设备数量的减少(由于多路复用)和级数的减少,获得了更好的性价比。本文介绍了一种利用并行性和分段实现高速ATM交换的ATM交换机。有了这个特性,可以使用CMOS和BiCMOS技术(目前实施)切换超过2.5 Gb/s的每输入/输出,以及更先进的BiCMOS/GaAs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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