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Asymmetric traffic provisioning in integrated cloud-fog based on flexible multi-flow optical transponder

机译:基于柔性多流光转发器的集成云雾中的非对称流量配置

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摘要

To accommodate the asymmetric characteristic of Internet traffic, we propose a flexible node architecture based on multi-flow optical transponders (MF-OTP) under the integrated Cloud-Fog framework. The proposed MF-OTP architecture is flexible in the following two degrees. Firstly, it can be flexibly adjusted to transmit either downstream or upstream traffic according to the timely traffic demand distribution. Secondly, it allows multiple sub-channels using flexible (i.e., same/different) modulation formats to serve the same traffic demand. To evaluate the efficiency of the flexible MT-OTP in serving asymmetric traffic, we propose two integer linear programming (ILP) models to address the routing, modulation and spectrum assignment (RMSA), with one aiming at minimizing the required number of sub-channels and another aiming at maximizing the volume of traffic transmission. Numerical simulations are conducted and the results show that the proposed models based on the flexible MF-OTP architecture requires less number of sub-channels and can serve more traffic demands.
机译:为了适应Internet流量的非对称特性,我们在集成的Cloud-Fog框架下提出了一种基于多流光转发器(MF-OTP)的灵活节点体系结构。所提出的MF-OTP体系结构在以下两个方面具有灵活性。首先,它可以根据流量需求的及时分配灵活调整以传输下游或上游流量。其次,它允许使用灵活的(即,相同/不同的)调制格式的多个子信道来满足相同的业务需求。为了评估灵活MT-OTP在服务于非对称业务中的效率,我们提出了两个整数线性规划(ILP)模型来解决路由,调制和频谱分配(RMSA)问题,其中一个旨在最大程度地减少所需的子信道数量另一个目的是最大程度地提高交通传输量。进行了数值模拟,结果表明,所提出的基于灵活MF-OTP架构的模型需要较少的子信道数量,并且可以满足更多的流量需求。

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