自相似流量下广域网分组大小分布测量的突发分组性能分析

Zhaobiao Lu, Zhijian Xu, Bin Wan, Min Zhang, P. Ye
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引用次数: 1

摘要

本文研究了光突发交换(OBS)网络中三种典型的突发装配机制,即基于阈值的、基于定时器的和混合装配算法的收敛性能。突发汇聚是光突发交换(OBS)网络边缘节点上实现的一项重要功能。它通过聚合来自客户端网络的多个数据包来创建更大的光突发以通过OBS网络传输,从而减少光层的交换负担和开销。此外,设计合理的突发组合可以降低交通的自相似性,作为交通整形器。设计爆破组合的主要挑战是平衡几个相反的目标:首先,增加爆破尺寸;第二,维持突发装配过程中引入的可接受的装配延迟;第三,在自相似流量的情况下,尽可能降低自相似度。在自相似输入流量下,通过测量广域网分组大小分布,对光突发大小和分组延迟等关键参数进行了仿真研究。讨论了混合装配中突发尺寸与装配延迟之间的平衡问题。结果表明,当传入IP包大小为离散时,装配阈值使突发大小保持在阈值附近,而装配时间限制使突发大小分散,甚至分裂成多个峰值。此外,输入流量的自相似性对三种机制的突发大小和装配延迟的影响很小。对于混合装配,当装配阈值和装配时限参数之一固定时,当大于某一值时,通过调整其他参数难以改善突发尺寸和装配延迟
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of Burst Assembly under Self-Similar Traffic with Measured WAN Packet Size Distribution
Studied in this paper is the convergence performance of three typical burst assembly mechanisms in optical burst-switching (OBS) networks, namely threshold-based, timer-based, and hybrid assembly algorithms. Burst assembly is an important function implemented at edge nodes in optical burst switching (OBS) networks. It can reduce the switching burden and overheads at the optical layer, by aggregating multiple packets from client networks to create a larger optical burst for transmission through the OBS network. Furthermore, burst assembly designed properly can reduce the self-similarity of traffic as traffic shaper. The main challenge in designing burst assembly is to balance the several opposing objectives: first, increasing the burst size; second, maintaining acceptable assembly delay introduced during burst assembly; thirdly, reducing the self-similarity as possible in case of self-similar traffic. Vital parameters, such as optical burst size and assembly delay, are examined by simulations under self-similar input traffic with a measured WAN packet size distribution. The balance between the burst size and the assembly delay for hybrid assembly is also discussed. The results show that the assembly threshold always keeps the burst size near the threshold while the assembly time-limit makes the burst size scattered and even split into multiple peaks when the incoming IP packet size is discrete. In addition, the self-similarity of input traffic has little impact on the burst size and the assembly delay for all three mechanisms. For hybrid assembly, when one of the assembly threshold and the assembly time-limit parameters is fixed, the burst size and the assembly delay are hard to improve by adjusting the other parameter when greater than a certain value
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