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Statistical Capacity Sharing for Variable-Rate Connections in Flexible Grid Optical Networks

机译:用于灵活网格光网络中的可变速率连接的统计容量

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In this paper, we study a new optical network paradigm, where statistical sharing is supported in optical networks. This new paradigm is motivated by the recent revolution of Software Defined Optics (SDO). Software defined variable-bandwidth transponders can support variable data rates for a single connection, i.e. base rates and peak rates. Guaranteeing the peak rates for all the connections simultaneously requires the spectrum for all circuits to be provisioned for peak rates, leading to a large amount of bandwidth usage with low utilization. However, if resources are provisioned for the base rate of each connection, with some shared spectrum resources set aside to allow a fraction of these connections to dynamically switch to their peak rates, then spectrum resources can be allocated more efficiently, allowing a greater number of connections to be accommodated. We reserve a fraction of the spectrum resources for provisioning of base rate of the dynamic traffic while the rest of the spectrum resources are reserved for peak rate, allowing statistical sharing. Our goal is to minimize the blocking of the arriving connection requests, while at the same time maximizing the chance that existing connection requests are able to switch from base rate to peak rate. These two goals conflict with each other; therefore, we need to find a trade-off based on the amount of spectrum resources set aside for the peak rate, and based on the routing, modulation format selection, and spectrum allocation (RMSA) scheme. Our evaluation can help network operators to determine the amount of spectrum that requires to be set aside for peak rates in order to maximize revenue.
机译:在本文中,我们研究了一种新的光网络范例,其中光网络支持统计共享。这种新的范例是最近的软件定义光学(SDO)的革命。软件定义的可变带宽转发器可以支持单个连接的可变数据速率,即基本速率和峰值速率。保证所有连接的峰值率同时需要为峰值速率供应的所有电路的频谱,导致具有低利用率的大量带宽使用。但是,如果为每个连接的基本速率提供资源,则使用一些共享的频谱资源,以允许这些连接的一小部分动态切换到它们的峰值速率,然后可以更有效地分配频谱资源,允许更大数量的要容纳的连接。我们保留了一分的频谱资源,以供应动态流量的基本率,同时保留频谱资源的其余部分以获得峰值率,允许统计共享。我们的目标是最大限度地减少到达到达的连接请求的阻塞,同时最大化现有连接请求能够从基速率切换到峰值速率的可能性。这两个目标彼此冲突;因此,我们需要基于为峰值速率预留的频谱资源量,并基于路由,调制格式选择和频谱分配(RMSA)方案来找到权衡。我们的评估可以帮助网络运营商确定需要搁置峰值率的频谱量,以最大限度地提高收入。

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