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Taking Turns with adaptive cycle time - an upstream media access scheme for extended-reach FTTx

机译:以自适应周期时间轮流-扩展范围FTTx的上游媒体访问方案

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Several centralized algorithms have been proposed for upstream bandwidth-allocation in passive optical networks (PONs); making the optical line terminal (OLT) in the central office the intelligent device that arbitrates time-division access to the shared upstream channel. When the distance between the OLT and optical network units (ONUs) is extended from 20 km to beyond 100 km, as suggested by next generation long-reach PONs, it becomes difficult for centralized algorithms to support service differentiation required for real-time applications. This is because these algorithms are based on bandwidth negotiation messages frequently exchanged between the OLT and ONUs, which become seriously delayed, when the network is extended, causing the performance to degrade. In this paper, we propose a distributed scheme for the emerging LR-PON while also allowing centralized control over the access network. Simulation results show that the average upstream packet delay can be significantly decreased below that of centralized algorithms while maintaining a high throughput.
机译:对于无源光网络(PON)中的上行带宽分配,已经提出了几种集中式算法。使中心局中的光线路终端(OLT)成为智能设备,该智能设备可对时分接入的仲裁进行仲裁。正如下一代长距离PON所建议的那样,当OLT与光网络单元(ONU)之间的距离从20 km扩展到100 km以上时,集中式算法将难以支持实时应用所需的服务区分。这是因为这些算法基于OLT和ONU之间频繁交换的带宽协商消息,当网络扩展时,带宽协商消息会严重延迟,从而导致性能下降。在本文中,我们为新兴的LR-PON提出了一种分布式方案,同时还允许对接入网络进行集中控制。仿真结果表明,在保持较高吞吐量的同时,平均上游数据包延迟可以大大降低,低于集中式算法的平均延迟。

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