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Separating resource reservations from service requests to improve the performance of optical burst-switching networks

机译:将资源预留与服务请求分开,以提高光突发交换网络的性能

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In this paper, we introduce a new signalling architecture called Dual-header Optical Burst Switching (DOBS) for next generation burst-switching optical networks. DOBS decouples the resource reservation process from the service request process in core nodes and allows for delayed scheduling to be implemented. This relaxes the constraints on burst scheduling operations and allows the offset sizes of bursts to be precisely controlled in core nodes without the use of fiber delay line buffers. This allows for increased flexibility, control, and performance. To demonstrate the benefit of delayed scheduling and core. node offset control, we examine the performance of a DOBS system in which the offset size of every burst on a core link is set to a constant value. Using simulation and analysis, we show that the resulting constant-scheduling-offset (CSO) system realizes lower ingress delay, higher throughput, and better fairness than conventional single-header OBS systems, while simultaneously requiring only O(1) burst scheduling complexity. In a 16-channel system with full wavelength conversion and no fiber delay line buffers, the CSO DOBS system achieved a blocking probability 50% lower than that of a similar LAUC-VF JET OBS system. The CSO DOBS system also achieved perfect fairness, both with respect to burst length and with respect to the residual path length of bursts.
机译:在本文中,我们为下一代突发交换光网络介绍了一种称为双头光学突发交换(DOBS)的新信令体系结构。 DOBS将资源预留过程与核心节点中的服务请求过程分离开来,并允许实施延迟调度。这放宽了对突发调度操作的约束,并允许在核心节点中精确控制突发的偏移大小,而无需使用光纤延迟线缓冲器。这样可以提高灵活性,控制能力和性能。演示延迟调度和核心的好处。在节点偏移控制方面,我们研究了DOBS系统的性能,在该系统中,核心链路上每个突发的偏移大小均设置为恒定值。使用仿真和分析,我们显示,与常规的单头OBS系统相比,所得的恒定调度偏移量(CSO)系统实现了更低的入口延迟,更高的吞吐量和更好的公平性,同时仅需要O(1)突发调度复杂性。在具有全波长转换且没有光纤延迟线缓冲器的16通道系统中,CSO DOBS系统的阻塞概率比类似的LAUC-VF JET OBS系统低50%。 CSO DOBS系统在突发长度和突发的剩余路径长度方面也达到了完美的公平性。

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