光放大无源光网络:功率预算分析

C. Michie, A. Kelly, J. Mcgeough, S. Karagiannopoulos, Ivan Andonovic
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引用次数: 22

摘要

无源光网络(pon)作为一种提供接入网解决方案的手段正在被积极地追求。节点间接口数量的减少所带来的成本效益使得PON的部署不断增加,将光纤传输到家庭和光纤传输到路边。然而,在许多情况下,对高分割比或延伸的需求需要放大以克服额外的损失。掺铒放大器在pon中的应用有限,因为工作波长通常包括1.3 μ m的回程。半导体光放大器(soa)提供了一种具有成本效益的解决方案,具有向集成的迁移路径;部署选项包括用作前置放大器、升压放大器或跨中放大器。我们提出了一种理论处理,分析了放大系统的操作需求,并通过实验证明了这一分析的合理性。据我们所知,该分析首次考虑了由于放大pon中存在的显著放大的自发发射功率而引入接收器的直流偏置,其中滤波器宽度通常为20 nm或更大。
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Optically amplified passive optical networks : a power budget analysis
Passive optical networks (PONs) are being aggressively pursued as a means of delivering access network solutions. The cost benefits resulting from a reduction in the number of interfaces between nodes has enabled increasing deployment of a PON delivering fiber to the home and fiber to the curb. However, in many cases, the need for high split ratios or an extended-reach requires amplification to overcome additional losses. Erbium-doped amplifiers have a limited use in PONs since the operational wavelengths typically include backhaul at 1.3 mu m. Semiconductor optical amplifiers (SOAs) offer a cost-effective solution with a migration path toward integration; deployment options include its use as a preamplifier, booster, or midspan amplifier. We present a theoretical treatment that analyzes the amplified system operational requirements and justifies this analysis through the experiment. The analysis considers for the first time to our knowledge the dc offset that is introduced into the receiver as a result of the significant amplified spontaneous emission powers present in amplified PONs, where filter widths are typically 20 nm or greater.
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