光突发交换网络中的集成拥塞控制机制

Sungchang Kim, B. Mukherjee, Minho Kang
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引用次数: 6

摘要

光突发交换(OBS)是实现光互联网骨干网的一种很有前途的解决方案。然而,缺乏适当的拥塞控制机制可能导致高突发损失。采用光纤延迟线(FDL)、波长转换、偏转路由等减少突发碰撞的方法无法有效防止网络拥塞。为了解决这个问题,我们提出并研究了一种用于OBS网络的全局解决方案,称为集成拥塞控制机制(ICCM)。ICCM结合拥塞避免和恢复机制,根据核心路由器向边缘路由器反馈的信息,限制进入网络的突发流数量,防止网络拥塞。同时,提出了一种流量监管方案,在核心路由器上有意地以一定概率丢弃过载流量,以支持流量之间的公平性。此外,控制每个流的传输速率以实现优化性能,例如使用边缘路由器上的两步速率控制器最大化吞吐量或最小化损失概率。仿真结果表明,ICCM有效地消除了网络内的拥塞,并且与流监管机制相结合,可以在保持有效网络性能的同时支持竞争流的公平性
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Integrated congestion-control mechanism in optical burst switching networks
Optical burst switching (OBS) is a promising solution to implement the optical Internet backbone. However, the lack of adequate congestion-control mechanisms may result in high burst loss. Schemes such as fiber delay line (FDL), wavelength conversion, and deflection routing to reduce burst collision are unable to prevent the network congestion effectively. To address this problem, we propose and investigate a global solution, called integrated congestion-control mechanism (ICCM), for OBS networks. ICCM, which combines congestion avoidance with recovery mechanism, restricts the amount of burst flows entering the network according to the feedback information from core routers to edge routers to prevent network congestion. Also, a flow-policing scheme is proposed to intentionally drop the overloaded traffic with a certain probability at a core router to support fairness among flows. Moreover, the transmission rate of each flow is controlled to achieve optimized performance such as maximizing throughput or minimizing loss probability using a two-step rate controller at the edge router. Simulation results show that ICCM effectively eliminates congestion within the network and that, when combined with a flow-policing mechanism, the fairness for competing flows can be supported while maintaining effective network performance
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