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Coded optical time domain reflectometry : principle and applications

机译:编码光学时域反射仪:原理和应用

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In this paper, we will briefly outline our contributions for the physical realization of coded OTDR, along with its principles and also highlight recent key results related with its applications. For the communication network application, we report a multi-port / multi-wavelength, high-speed supervisory system for the in-service monitoring of a bidirectional WDM-PON system transmission line up to 16 ports × 32 nodes (512 users) capacity. Monitoring of individual branch traces up to 60 km was achieved with the application of a 127-bit simplex code, corresponding to a 7.5dB SNR coding gain effectively reducing the measurement time about 30 times when compared to conventional average mode OTDR. Transmission experiments showed negligible penalty from the monitoring system to the transmission signal quality, at a 2.5Gbps / 125Mbps (down / up stream) data rate. As an application to sensor network, a Raman scattering based coded-OTDR distributed temperature sensor system will be presented. Utilizing a 255-bit Simplex coded OTDR together with optimized sensing link (composed of cascaded fibers with different Raman coefficients), significant enhancement in the interrogation distance (19.5km from coding gain, and 9.6km from link-combination optimization) was achieved to result a total sensing range of 37km (at 17m/3K spatial/temperature resolution), employing a conventional off-shelf low power (80mW) laser diode.
机译:在本文中,我们将简要概述我们为编码OTDR的物理实现所做的贡献及其原理,并重点介绍与它的应用相关的最新关键成果。对于通信网络应用,我们报告了一种多端口/多波长,高速监控系统,用于对双向WDM-PON系统传输线进行服务中监控,最多可容纳16个端口×32个节点(512个用户)。通过使用127位单工码,可实现长达60 km的单个分支迹线的监视,与传统的平均模式OTDR相比,它具有7.5dB SNR编码增益,有效地将测量时间缩短了约30倍。传输实验表明,在2.5Gbps / 125Mbps(下行/上行)数据速率下,监控系统对传输信号质量的影响可以忽略不计。作为传感器网络的应用,将提出基于拉曼散射的编码OTDR分布式温度传感器系统。通过使用255位Simplex编码的OTDR和优化的传感链路(由具有不同拉曼系数的级联光纤组成),可以显着提高询问距离(编码增益为19.5 km,链路组合优化为9.6 km)。使用常规的现成低功耗(80mW)激光二极管,总感应距离为37km(在17m / 3K空间/温度分辨率下)。

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