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Lighting fibers in a dark network

机译:在黑暗的网络中照明光纤

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摘要

We consider the problem of network design in transparent, or clear channel, optical networks associated with wavelength-division multiplexing (WDM). We focus on the class of traffic engineering models known as routing, wavelength, and capacity assignment problems. Here, in contrast to traditional networks, traffic flow paths must also be assigned an end-to-end wavelength. This additional requirement means that there can be an increased cost associated with optimal capacity allocations for such WDM-flows. In general, this can be arbitrarily worse than traditional network designs. We argue that in order to evaluate the benefit of different switch technologies, a good benchmark is to measure the increase in costs purely in terms of link capacity, we call this the cost of transparency. Experimental research shows that this cost is small in multifiber networks with modest switching functionality at the nodes. We present theoretical justification for why this occurs, and prove that in multiwavelength multifiber transparent networks the cost of transparency all but disappears if there is moderate traffic load. Our arguments are based on efficient heuristics that may also be useful for more complex network optimizations. This suggests that the cost savings from using wavelength converters is significant only in young networks with relatively few fibers lit. Such savings may, thus, be small relative to the initial capital expense involved in installing wavelength conversion.
机译:我们考虑与波分复用(WDM)相关的透明或明信道光网络中的网络设计问题。我们专注于流量工程模型的类别,称为路由,波长和容量分配问题。在此,与传统网络相反,还必须为业务流路径分配端到端波长。这种额外的要求意味着与这种WDM流的最佳容量分配有关的成本可能会增加。通常,这可能比传统的网络设计更糟。我们认为,为了评估不同交换技术的好处,一个好的基准是纯粹根据链路容量来衡量成本的增长,我们将此称为透明性成本。实验研究表明,在节点具有适度交换功能的多光纤网络中,此成本很小。我们提供了发生这种情况的理论依据,并证明了在多波长多光纤透明网络中,如果流量负荷适中,透明成本几乎消失了。我们的论点基于有效的启发式方法,这对于更复杂的网络优化也可能有用。这表明,仅在光纤点亮相对较少的年轻网络中,使用波长转换器才能节省大量成本。因此,相对于安装波长转换所涉及的初始资本支出,这种节省可能很小。

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