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Delay analysis for ethernet long-reach passive optical networks

机译:以太网长距离无源光网络的延迟分析

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Designing low latency polling schemes is one of the most important parts for passive optical networks (PONs), particularly for long-reach PONs (LR-PON) which suffer from long propagation delays. Sophisticated and efficient bandwidth allocation mechanisms are required to cope with the imposed transmission delay in LR-PONs. In this work, we evaluate three dynamic bandwidth allocation methods in terms of transmission delay. Namely, we consider conventional or interleaved polling for traditional PON and two recently introduced scheduling paradigms for next generation LR-PON, i.e., multi-thread polling (MT-P) and real-time polling (RT-P). We examine various flavors of each scheduling method and investigate their shortcomings and advantages in a LR-PON setting. Furthermore, we provide an analytical framework for obtaining packet delay in an enhanced version of RT-P method. The simulation results highly match the analysis for this framework. Also, our results indicate that RT-P method significantly reduces frame delay in LR-PONs compared to MT-P and conventional polling methods.
机译:设计低等待时间轮询方案是无源光网络(PON)尤其是遭受长传播延迟的长距离PON(LR-PON)最重要的部分之一。需要复杂而有效的带宽分配机制来应对LR-PON中强加的传输延迟。在这项工作中,我们根据传输延迟评估了三种动态带宽分配方法。即,我们考虑用于传统PON的常规或交错轮询,以及最近引入的用于下一代LR-PON的两种调度范例,即,多线程轮询(MT-P)和实时轮询(RT-P)。我们研究了每种调度方法的各种风格,并研究了它们在LR-PON环境中的缺点和优势。此外,我们提供了一种分析框架,用于在增强版本的RT-P方法中获取数据包延迟。仿真结果与该框架的分析高度匹配。而且,我们的结果表明,与MT-P和传统轮询方法相比,RT-P方法显着减少了LR-PON中的帧延迟。

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