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A high performance switch for OC-12 SONET self-healing ring networks

机译:用于OC-12 SONET自愈环网的高性能交换机

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摘要

The progress of ITU-T and ANSI standards on SDH/SONET is accelerating the evolution of transmission systems all over the world. The advanced operation administration and maintenance (OAM) functions it provides makes it possible to create a self healing ring network which protects against failure. This self-healing ring consists of add/drop multiplexers (ADM's). The switch in the ADM plays an important role in achieving self-healing operation. In this paper, self-healing ring architecture and operations are analyzed in order to determine the requirements for the ADM switch. On the basis of this result, new space division switching methods, which significantly reduce the amount of hardware needed, are proposed. A parallel processing architecture which makes it possible to develop a low-cost large-scale switch is also devised. Finally, a developed switch LSI chip is presented. Combining two identical chips with the proposed parallel processing architecture, a 32/spl times/32 STS-3 switch (5 Gb/s throughput) with an STS-1 time slot interchange (TSI) function is realized.
机译:ITU-T和ANSI标准在SDH / SONET方面的进步正在加速全球传输系统的发展。它提供的高级操作管理和维护(OAM)功能使创建自愈环网成为可能,从而防止出现故障。此自愈环由分插复用器(ADM)组成。 ADM中的开关在实现自我修复操作中起着重要作用。本文分析了自愈环的架构和操作,以确定对ADM交换机的要求。基于此结果,提出了新的空分切换方法,该方法大大减少了所需的硬件数量。还设计了一种并行处理架构,可以开发低成本的大规模交换机。最后,介绍了开发的开关LSI芯片。将两个相同的芯片与所提出的并行处理体系结构相结合,可以实现具有STS-1时隙交换(TSI)功能的32 / spl次/ 32 STS-3交换机(吞吐量为5 Gb / s)。

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