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Performance of OBS techniques under self-similar traffic based on various burst assembly techniques

机译:基于各种突发组装技术的自相似流量下的OBS技术性能

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摘要

In this paper, the performance of some well-known Optical Burst Switching (OBS) techniques is analyzed under self-similar traffic using the time threshold based burst assembly and the hybrid burst assembly techniques. The characteristics of the optical bursts formed at ingress nodes by the burst assembly techniques are studied extensively by changing input traffic load and the time threshold value. The performance of the OBS techniques, which are the horizon scheduling technique, two void filling techniques, and the group scheduling technique, are evaluated in terms of burst loss rate and byte loss rate. Although, in the OBS literature, burst loss rate is a commonly employed metric, it is observed that the burst loss rates obtained are different than the corresponding byte loss rates. Such a result is caused by variable burst sizes. It is also seen that the performance ranking using burst loss rate is not the same as the performance ranking using byte loss rate for some cases due to the characteristics of the OBS techniques. Moreover, the traffic characteristics of the optical bursts at ingress and egress nodes are examined in terms of the Hurst parameter values. It is observed that the self-similarity of the incoming traffic is mainly affected by the burst assembly techniques. It is shown that when the TTh based burst assembly is used, the Hurst parameter of the traffic degrades drastically. However, when the hybrid burst assembly is employed, the Hurst parameter of the traffic remains closer to the Hurst parameter of the original self-similar IP traffic.
机译:在本文中,使用基于时间阈值的突发组装和混合突发组装技术,在自相似流量下分析了一些著名的光学突发交换(OBS)技术的性能。通过改变输入业务负载和时间阈值,广泛研究了通过突发组装技术在入口节点形成的光突发的特性。根据突发丢失率和字节丢失率来评估OBS技术的性能,这些技术是水平调度技术,两种空隙填充技术和组调度技术。尽管在OBS文献中,突发丢失率是一种常用的度量标准,但是可以观察到获得的突发丢失率与相应的字节丢失率不同。这样的结果是由可变突发大小引起的。还可以看出,由于OBS技术的特性,在某些情况下,使用突发丢失率的性能排名与使用字节丢失率的性能排名并不相同。此外,根据赫斯特参数值检查在入口和出口节点的光突发的业务特性。可以看出,传入流量的自相似性主要受突发组装技术的影响。结果表明,使用基于TTh的突发集合时,流量的Hurst参数急剧下降。但是,当使用混合突发组件时,流量的Hurst参数保持更接近原始自相似IP流量的Hurst参数。

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