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Benefits of Node Architecture Flexibility and Hitless Re-Grooming in Transport Networks

机译:传输网络中节点架构灵活性和无间断重新整理的好处

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摘要

This paper proposes dimensioning models for transport network nodes taking into consideration the multiplexing/grooming architecture. The models are suitable for multi-period planning and assume node architectures with different levels of flexibility. Fixed architectures are based on muxponder modules whereas flexible architectures comprise an electrical cross connect (EXC). Within the flexible architectures, non-blocking EXC and partial non-blocking EXCs architectures are considered. Importantly, the models also support hitless re-grooming in flexible architectures. Using the developed models, we analyze the impact of node architecture flexibility in the number of line interfaces required, and assess the potential savings attained by exploiting hitless re-grooming. Results show that enhanced flexibility produces more savings when the client traffic bit rate is much smaller than the line bit rate. Moreover, hitless traffic re-grooming can assist in mitigating the impact of flexibility limitations that arise when deploying smaller sized EXCs.
机译:考虑到复用/整理架构,本文提出了用于传输网络节点的尺寸模型。这些模型适用于多周期计划,并假定节点体系结构具有不同的灵活性。固定架构基于多路复用器模块,而灵活架构则包括电交叉连接(EXC)。在灵活的体系结构中,考虑了非阻塞EXC和部分非阻塞EXC体系结构。重要的是,这些模型还支持灵活架构中的无缝修改。使用开发的模型,我们分析了节点体系结构灵活性对所需线路接口数量的影响,并评估了通过利用无中断重新整理获得的潜在节省。结果表明,当客户端流量比特率远小于线路比特率时,增强的灵活性可以节省更多成本。此外,无间断的流量重新整理可以帮助减轻在部署较小尺寸的EXC时出现的灵活性限制的影响。

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