Effect of Number of Burst Assemblers on TCP Performance in Optical Burst Switching Networks

Guray Gurel, Ezhan Karasan
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引用次数: 12

Abstract

Burst assembly mechanism is one of the fundamental factors that determine the performance of an optical burst switching (OBS) network. In this paper, we investigate the influence of number of burstifiers on TCP performance for an OBS network. An ns2-based OBS network simulator is developed for simulating the optical network. The goodput of TCP flows between an ingress and an egress nodes traveling through an optical network is studied for different values of the number of assembly buffers per destination. First, the losses resulting from the congestion in the core OBS network are modeled using a burst independent Bernoulli loss model. Then, a background burst traffic is generated to create contention at a core node in order to realize a burst dependent loss model. Simulation results show that for an OBS network employing timer-based assembly algorithm, TCP goodput increases as the number of burst assemblers is increased for both types of loss models. The improvement from one burstifier to moderate number of burst assemblers is significant (15-50% depending on the burst loss probability, processing delay and the TCP version), but the goodput difference between moderate number of buffers and per- flow aggregation is relatively small, implying that a cost-effective OBS edge switch implementation should use moderate number of assembly buffers per destination for enhanced TCP performance.
光突发交换网络中突发汇编器数量对TCP性能的影响
突发分组机制是决定光突发交换(OBS)网络性能的基本因素之一。本文研究了OBS网络中助剂数量对TCP性能的影响。开发了一种基于ns2的OBS网络仿真器,用于光网络仿真。研究了在光网络中每个目的节点的集合缓冲区数目不同的情况下,TCP流在入节点和出节点之间的良好传输。首先,采用独立于突发的伯努利损失模型对核心OBS网络中拥塞造成的损失进行建模。然后,在一个核心节点上产生一个后台突发流量来产生争用,从而实现一个突发相关的损失模型。仿真结果表明,对于采用基于定时器的装配算法的OBS网络,对于两种损失模型,TCP goodput都随着突发装配器数量的增加而增加。从一个缓冲器到中等数量的突发汇编器的改进是显著的(15-50%,取决于突发丢失概率、处理延迟和TCP版本),但是中等数量的缓冲区和每流聚合之间的良好差异相对较小,这意味着一个经济有效的OBS边缘交换机实现应该在每个目的地使用中等数量的汇编缓冲区来增强TCP性能。
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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