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Instant Provisioning of Wavelength Service Using Quasi-Circuit Optical Burst Switching

机译:使用准电路光突发切换即时提供波长服务

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摘要

Due to the recent outstanding advancement of optical networking technology, pervasive Grid computing will be a feasible option in the near future. As Grid infrastructure, optical networks must be able to handle different Grid traffic patterns with various traffic characteristics as well as different QoS requirements. With current optical switching technology, optical circuit switching is suitable for data-intensive Grid applications while optical burst switching is suitable to submit small Grid jobs. However, there would be high bandwidth short-lived traffic in some emerging Grid applications such as multimedia editing. This kind of traffic couldn't be well supported by both OCS and conventional OBS because of considerable path setup delay and bandwidth waste in OCS and inherent loss in OBS. Quasi-Circuit OBS (QCOBS) is proposed in this paper to address this challenge, providing one-way reserved, nearly lossless, instant provisioned wavelength service in OBS networks. Simulation results show that QCOBS achieves lossless transmission at low and moderate loads, and very low loss probability at high loads with proper guard time configuration.
机译:由于光网络技术的最新杰出发展,普及的网格计算将在不久的将来成为可行的选择。作为网格基础设施,光网络必须能够处理具有各种流量特性以及不同QoS要求的不同Grid流量模式。使用当前的光交换技术,光电路交换适合于数据密集型Grid应用,而光突发交换则适合于提交小型Grid作业。但是,在某些新兴的Grid应用程序(如多媒体编辑)中,将存在高带宽的短暂流量。 OCS和常规OBS都无法很好地支持这种流量,因为OCS中路径建立延迟,带宽浪费以及OBS的固有损耗都相当大。本文提出了准电路OBS(QCOBS)来解决这一挑战,它在OBS网络中提供了一种单向预留,几乎无损,即时配置的波长服务。仿真结果表明,通过适当的保护时间配置,QCOBS在中低负载下实现了无损传输,在高负载下实现了极低的丢失概率。

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