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Highly Utilized Fiber Plant with Extended Reach and High Splitting Ratio Based on AWG and EDFA Characteristics

机译:基于AWG和EDFA特性的延伸率高,分裂比高的纤维厂

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In this paper, we propose a hybrid time-division multiplexing and dense wavelength-division multiplexing scheme to implement a cost-effective and scalable long-reach optical access network (LR-OAN). Our main objectives are to increase fiber plant utilization, handle upstream and downstream flow through the same input/output port, extend the reach, and increase the splitting ratio. To this end, we propose the use of an arrayed waveguide grating (AWG) and an erbium-doped fiber amplifier (EDFA) in one configuration. AWG is employed to achieve the first and second objectives, while EDFA is used to achieve the third and fourth objectives. The performance of the proposed LR-OAN is verified using the Optisystem and Matlab software packages under bit error rate constraints and two different approaches (multifiber and single-fiber). Although the single-fiber approach offers a more cost-effective solution because service is provided to each zone via a common fiber, it imposes additional losses, which leads to a reduction in the length of the feeder fiber from 20 km to 10 km.
机译:在本文中,我们提出了一种混合时分复用和密集波分复用方案,以实现具有成本效益和可扩展的远距离光接入网(LR-OAN)。我们的主要目标是提高纤维厂的利用率,处理通过同一输入/输出端口的上游和下游流量,扩大覆盖范围,并提高分流比。为此,我们建议在一种配置中使用阵列波导光栅(AWG)和掺er光纤放大器(EDFA)。 AWG用于实现第一和第二目标,而EDFA用于实现第三和第四目标。使用Optisystem和Matlab软件包在误码率约束和两种不同方法(多光纤和单光纤)下验证了所提出的LR-OAN的性能。尽管单纤方法提供了更具成本效益的解决方案,因为通过公用光纤为每个区域提供服务,但这会带来额外的损失,从而导致馈线长度从20 km减少到10 km。

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