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WDM-PON architectures with a single shared interferometric filter for carrier-reuse upstream transmission

机译:具有单个共享干涉式滤波器的WDM-PON架构,用于载波复用的上行传输

摘要

We propose two novel wavelength-division-multiplexed passive-optical-network (WDM-PON) architectures where subcarriers are employed to transmit downstream data and optical carriers are reused for upstream transmission. Architecture I is designed for the situation where two short distribution fibers are available between the remote node (RN) and each optical network unit (ONU), whereas Architecture II is devised for the case where there is only one distribution fiber between the RN and each ONU. Both architectures use only one interferometric filter located at the RN to simultaneously separate all downlink optical carriers and subcarriers, leading to a considerable cost reduction in the implementation of the WDM-PONs. Separated optical carriers are then reused and injected into reflective semiconductor optical amplifiers as the uplink light sources, which eliminates the necessity of specific wavelength sources at the ONUs. The downstream subcarrier signals are directly detected using baseband receivers. Two multichannel upstream and downstream transmission experiments are carried out at 1.25 Gb/s using the proposed schemes. The impact of optical carrier-to-subcarrier ratio of downlink signal, Rayleigh-backscattering noise, and wavelength mismatch between laser source and filter on system performance is also investigated.
机译:我们提出了两种新颖的波分复用无源光网络(WDM-PON)架构,其中采用子载波传输下游数据,而将光载波重用于上游传输。架构I是为在远程节点(RN)与每个光网络单元(ONU)之间有两个短分布光纤的情况而设计的,而架构II是为在RN与每个光网络单元之间只有一根分布光纤的情况而设计的ONU。两种架构都仅使用位于RN的一个干涉式滤波器来同时分离所有下行链路光载波和子载波,从而在实现WDM-PON时大大降低了成本。然后,分离的光载波被重新使用,并作为上行链路光源注入反射型半导体光放大器中,从而消除了ONU上特定波长源的必要性。使用基带接收器直接检测下行子载波信号。使用所提出的方案以1.25 Gb / s进行了两个多通道上行和下行传输实验。还研究了下行链路信号的光载波与子载波之比,瑞利反向散射噪声以及激光源与滤波器之间的波长失配对系统性能的影响。

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