An Enhanced Train Assembly Policy for Lossless OBS with CAROBS

T. Coutelen, B. Jaumard, G. Hébuterne
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引用次数: 8

Abstract

The traffic evolution is notoriously marked by an increasing dynamism that promotes the design of a dynamic optical layer. Despite the contention issue, Optical Burst Switchingis planned to be deployed in the near future because it offers the required reactivity.Recourse to electrical processing to solve burst contentions has been disregarded because it can dramatically impact the end-to-end delay and the electrical memory requirements. Recently, the CAROBS transmission scheme has been proposed as an adapted response to the drawbacks of translucent architectures: By exploiting both edge and core traffic grooming, CAROBS significantly reduces the contention rate and the duration of the aggregation process. With the additional use of wavelength conversion, loss-less transfer is achieved with similar end-to-end delay and memory requirements as in all-optical OBS networks.The objective in this paper is to attain similar delay and memory performances for loss-less transfers without the support of wavelength converters. We propose a new train assembly process, called CTA, which reduces the time spent in electrical buffers by decreasing the offset times of the trains. The resulting reduction of the buffer occupancy allows the achievement of similar performances as with wavelength conversion, even in congested states, without investing in any specific equipment.
具有carob的无损OBS的改进列车装配策略
众所周知,流量演变的特点是不断增加的动态性,这促进了动态光学层的设计。尽管存在争议问题,光突发交换计划在不久的将来部署,因为它提供了所需的反应性。求助于电处理来解决突发争用一直被忽视,因为它会极大地影响端到端延迟和电存储器要求。最近,CAROBS传输方案被提出作为对半透明架构缺点的适应性响应:通过利用边缘和核心流量疏导,CAROBS显著降低了争用率和聚合过程的持续时间。通过额外使用波长转换,实现了与全光OBS网络相似的端到端延迟和内存要求的无损传输。本文的目标是在没有波长转换器支持的情况下获得类似的无损传输延迟和存储性能。我们提出了一种新的列车装配过程,称为CTA,它通过减少列车的偏移时间来减少在电气缓冲器上花费的时间。由此产生的缓冲占用的减少允许实现与波长转换类似的性能,即使在拥挤的状态下,也不需要投资任何特定的设备。
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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