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Cost-Optimized Planning for Supporting 100 Gb/s and 40 Gb/s Services over Channel Count-Limited Optical Transport Networks

机译:通过通道数有限的光传输网络支持100 Gb / s和40 Gb / s服务的成本优化计划

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The increasing traffic demand resulting from the widespread use of information and communication technologies is impelling network operators to upgrade the capacity of their existing transport network facilities. Recent advances in the scientific community have led to the first developments in serial 100 Gb/s technology that could provide an adequate solution for solving the capacity expansion problem. Nevertheless, given the complexity of 100 Gb/s transceiver equipment, the initial costs may refrain early adoption of the technology, leading carriers to invest in more cost-effective alternatives. Embedded in the optical transport network (OTN) functionality portfolio, traffic grooming and virtual concatenation can be exploited in order to optimally combine 40 Gb/s and 100 Gb/s equipment for supporting mixed line rate (MLR) demands. Hence, this work proposes an optimization framework for designing optical transport infrastructures with the objective of minimizing the network costs directly related to transceiver and regenerator equipment. The framework models the problem via an integer linear programming formulation that takes into account the relative cost, the maximum optical reach, and the capacity of each optical interface, as well as the optical channel limit per fiber link. As a result, the proposed method is able to select the equipment type and the routing path for each connection which correspond to the most cost-effective solution satisfying the 100G and 40G service demands.
机译:信息和通信技术的广泛使用导致流量需求的增长,正促使网络运营商升级其现有传输网络设施的容量。科学界的最新进展导致了串行100 Gb / s技术的首次发展,该技术可以为解决容量扩展问题提供适当的解决方案。尽管如此,鉴于100 Gb / s收发器设备的复杂性,初始成本可能会阻碍该技术的早期采用,从而导致运营商投资于更具成本效益的替代产品。嵌入光传输网络(OTN)功能产品组合中,可以利用流量疏导和虚拟级联,以最佳地组合40 Gb / s和100 Gb / s设备来支持混合线速(MLR)需求。因此,这项工作提出了一种用于设计光传输基础设施的优化框架,其目的是将与收发器和再生器设备直接相关的网络成本降至最低。该框架通过整数线性编程公式对问题进行建模,该公式考虑了相对成本,最大光学范围,每个光学接口的容量以及每个光纤链路的光学通道限制。结果,所提出的方法能够为每个连接选择与满足100G和40G服务需求的最具成本效益的解决方案相对应的设备类型和路由路径。

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