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Optical coding for next-generation survivable long-reach passive optical networks

机译:下一代可生存的长距离无源光网络的光编码

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Optical coding has been proposed and has been well investigated for the monitoring of standard time domain multiplexing passive optical networks (TDM-PONs). We propose a physical layer fault management and protection system for next-generation passive optical networks, so-called long-reach PON (LR-PON), based on passive optical coding. Our approach exploits adapted, performance enhanced, and inexpensive passive optical components in the field, and electronic switches in the central office (CO). This allows detection and localization of the faulty segments in addition to the faulty nodes, hence decreasing the false alarm probability encountered in previous proposed approaches. We show that ring duplication protection in LR-PON can save almost half the cost compared with full duplication protection, with relatively high availability (99.992%). We describe the implementation strategy of our system in various well-known metro network topologies, including (1) single-ring-, (2) double-ring-, and (3) double-fiber-pairs-based ring topologies; all are considered different varieties of ring-and-spur LR-PON. The internal architecture of the remote nodes and the CO are also described in addition to the appropriate placement of our passive monitors. We develop two novel symmetric coding settings. We call them symmetrical optical encoders, which are suitable for fault detection and localization in the ring. We also develop the algorithms required to be executed by the network management system in the CO for fault detection, localization, and protection. Expressions for the upper bound notification and recovery times are also derived. Finally, we estimate that our system can recover from a fault in less than 0.5 ms for a 100 km ring length.
机译:已经提出了光编码并且已经进行了很好的研究,以用于监视标准时域复用无源光网络(TDM-PON)。我们提出了一种基于无源光编码的下一代无源光网络的物理层故障管理和保护系统,即所谓的长距离PON(LR-PON)。我们的方法在现场开发了适应性强,性能增强且价格低廉的无源光学组件,并在中央办公室(CO)中利用了电子交换机。除了故障节点之外,这还允许对故障段进行检测和定位,因此降低了先前提出的方法中遇到的虚警概率。我们显示,与完全复制保护相比,LR-PON中的环形复制保护可以节省几乎一半的成本,并且具有相对较高的可用性(99.992%)。我们在各种著名的城域网拓扑中描述了我们系统的实现策略,包括(1)单环,(2)双环和(3)基于双光纤对的环拓扑;所有这些都被认为是环杂LR-PON的不同品种。除了适当放置无源监视器之外,还描述了远程节点和CO的内部体系结构。我们开发了两种新颖的对称编码设置。我们称它们为对称光学编码器,适用于环网中的故障检测和定位。我们还开发了CO中的网络管理系统执行以进行故障检测,定位和保护所需的算法。还导出了上限通知和恢复时间的表达式。最后,我们估计对于100 km的环长,我们的系统可以在不到0.5 ms的时间内从故障中恢复。

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