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首页> 外文期刊>Optical Communications and Networking, IEEE/OSA Journal of >Slotted store-and-forward optical circuit-switched networks: A performance study
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Slotted store-and-forward optical circuit-switched networks: A performance study

机译:插槽式存储转发光电路交换网络:性能研究

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摘要

Optical switching techniques have benefited greatly from slotted networkode operations in terms of network performance, resource utilization, and computational complexity, especially for networks that are offered short, interactive flows. When we consider the delivery of bulk data flows, with each flow consuming a significant portion of the link bandwidth for a considerably long duration (of hours or days), then such fine granular slotted operations may be inefficient and unnecessary. In this paper, we investigate the applicability of coarser granular slotted network operations in networks where the majority of traffic is contributed by bulk data flows, and we consider how to find appropriate slot sizes, given the traffic demand distributions. Our study reveals that the choice of slot size is in fact a trade-off between bandwidth utilization efficiency and the size of the reservation window. We also find that for a particular example network scenario, when the slot size is equal to half of the mean flow size, the probability of request blocking can be reduced from 0.076 to 8.5 ×10, and the number of network reconfigurations can be reduced by a factor of five, compared with the un-slotted case.
机译:在网络性能,资源利用率和计算复杂度方面,光交换技术已从时隙化的网络/节点操作中受益匪浅,特别是对于提供短交互流的网络而言。当我们考虑批量数据流的传递时,每个流在相当长的持续时间(数小时或数天)内都消耗了链路带宽的很大一部分,那么这种精细的分时段操作可能是低效且不必要的。在本文中,我们研究了粗粒度时隙网络在网络中的大部分流量由批量数据流贡献的网络中的适用性,并且考虑到流量需求的分布情况,我们考虑如何找到合适的时隙大小。我们的研究表明,时隙大小的选择实际上是带宽利用效率和预留窗口大小之间的权衡。我们还发现,对于特定的示例网络场景,当插槽大小等于平均流量大小的一半时,请求阻塞的可能性可以从0.076降低到8.5×10,并且网络重新配置的数量可以减少与未开槽的情况相比,是五分之一。

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