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Mixed-line-rate optical network design with wavebanding

机译:带频段混合线速光网络设计

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To cope with ever increasing and more heterogeneous traffic demands, today's optical backbone networks are expected to support mixed line rates (MLR) over different wavelength channels. MLR networks can be designed to provide flexible rate assignments to low-bit-rate services and high-bit-rate services in a cost-effective manner. But with increasing number of wavelengths in the network, aggregating wavelengths into wavebands can further reduce the network cost. In this study, we incorporate the idea of waveband switching in MLR network design. Wavebanding or grouping of optical paths reduces the optical switch size at the optical cross-connects (OXCs). When several lightpaths share several common links, they can be grouped together and routed as a single waveband. For optical bypass at a transit node, only two optical ports are required for each waveband, hence reducing the port cost. It can be a challenge for an MLR network to waveband wavelengths of different line rates that have different transmission reaches. In our design, we present a suitable switching architecture and propose an efficient and cost-effective approach for wavebanding in an MLR network. The design problem is formulated as a mixed integer linear program (MILP) where the objective is to minimize transponder cost and port cost. A heuristic algorithm for wavebanding in MLR networks is provided. To further optimize our solution, we also present a Simulated Annealing algorithm for wavebanding. Our results show a significant improvement in cost savings compared to single-line-rate (SLR) networks with wavebanding and an MLR network employing only wavelength switching.
机译:为了应对不断增长的和越来越多样化的业务需求,当今的光骨干网有望支持不同波长信道上的混合线路速率(MLR)。可以将MLR网络设计为以经济高效的方式为低比特率服务和高比特率服务提供灵活的速率分配。但是随着网络中波长数量的增加,将波长聚集到波段中可以进一步降低网络成本。在这项研究中,我们将波段切换的思想纳入了MLR网络设计中。光路的波段划分或分组减小了光交叉连接(OXC)处的光开关尺寸。当几个光路共享几个公共链接时,可以将它们组合在一起并作为单个波段进行路由。对于转接节点处的光旁路,每个波段仅需要两个光端口,因此降低了端口成本。对于MLR网络来说,要达到具有不同传输范围的不同线速的波段波长可能是一个挑战。在我们的设计中,我们提出了一种合适的交换体系结构,并提出了一种有效且具有成本效益的方法来在MLR网络中进行波段划分。设计问题被表述为混合整数线性程序(MILP),其目的是最大程度地减少转发器成本和端口成本。提供了一种用于MLR网络中的波段的启发式算法。为了进一步优化我们的解决方案,我们还提出了一种用于波带的模拟退火算法。我们的结果表明,与具有波段的单线速率(SLR)网络和仅采用波长切换的MLR网络相比,节省了成本。

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