An optical packet switch design with shared electronic buffering and low bit rate add/drop inputs

S. Bjornstad, D. Hjelme, N. Stol
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引用次数: 27

Abstract

An optical packet switch design using optical switching and shared electronic buffering is described and analyzed. The electronic buffering and add/drop unit allows random memory access, variable packet length, and aggregation/segregation of low bit rate streams. The design is scalable to a large number of wavelengths, and employs contention resolution by using the wavelength dimension combined with electronic buffering. The number of buffer inputs, i.e. the number of optoelectronic conversions, is minimized. The packet loss and delay performance when using fixed packet length and electronic buffering are investigated by simulation. If the link utilization is moderate, the buffering requirements becomes minimal. If number of wavelengths in the link is increased, the number of buffer inputs can be reduced. With a sufficiently high number of wavelengths, the buffer requirements is minimal, even when the link utilization is high.
具有共享电子缓冲和低比特率添加/丢弃输入的光分组交换机设计
介绍并分析了一种采用光交换和共享电子缓冲的光分组交换机设计。电子缓冲和添加/删除单元允许随机存储器访问、可变数据包长度和低比特率流的聚合/分离。该设计可扩展到大量波长,并通过使用波长维度与电子缓冲相结合来实现争用分辨率。缓冲输入的数量,即光电转换的数量,被最小化。通过仿真研究了在使用固定包长和电子缓冲时的丢包性能和延迟性能。如果链路利用率适中,缓冲需求就会最小化。如果增加链路中的波长数,则可以减少缓冲输入的数量。有了足够多的波长,即使链路利用率很高,缓冲需求也是最小的。
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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