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首页> 外文期刊>Journal of Lightwave Technology >Statistical analysis of subcarrier-modulated transmission over 300 m of 62.5-/spl mu/m-core-diameter multimode fiber
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Statistical analysis of subcarrier-modulated transmission over 300 m of 62.5-/spl mu/m-core-diameter multimode fiber

机译:62.5- / spl mu / m纤芯直径多模光纤在300 m上副载波调制传输的统计分析

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摘要

We simulate subcarrier-modulated (SCM) transmission over 300 m of 62.5-/spl mu/m-core-diameter multimode fiber (MMF) using 1300-nm edge-emitting lasers and 850-nm vertical-cavity surface-emitting lasers (VCSELs) for beam offsets from 0 to 30 /spl mu/m. We model 81 "worst-case" fibers while scaling their bandwidth according to a differential modal delay (DMD) criterion of 2 ns/km for our analysis at a center wavelength of 1300 nm and a DMD of 4 ns/km for analysis at 850 nm, all in order to ensure that the worst 5% of the MMF is being modeled as per the Gigabit Ethernet standard. We consider SCM carrier frequencies from 1 to 9 GHz at data rates of 1.25 and 2.5 Gb/s. Results show that SCM transmission with eye-opening penalties (EOPs) below 3 dB is achievable at 2.5 Gb/s for both edge-emitting lasers and VCSELs. VCSELs are found to be better suited for center launch than offset launch while edge-emitting lasers are better suited for offset launch at radial offsets of 17 to 23 /spl mu/m. The region of best performance for VCSELs under offset launch is from radial offsets of 17 to 30 /spl mu/m at carrier frequencies of 0 to 8 GHz, over which we observed an EOP less than 5 dB, while for edge-emitting lasers we observed a region of best performance from 10 to 25 /spl mu/m over carrier frequencies from 2.5 to 9 GHz. This means that if interchannel crosstalk was ignored, a theoretical aggregate maximum bit rate for VCSELs of /spl sim/ 7.5 Gb/s should be achieved for three channels using a single offset launch between 17 and 30 /spl mu/m for a fiber length of 300 m in order to achieve an EOP less than 5 dB for each channel. For edge-emitting lasers, the theoretical maximum is /spl sim/ 5 Gb/s for two channels with each having an EOP of less than 3 dB for transmission over a fiber of length 300 m. We also demonstrate how SCM performance is influenced by the usable average slope (UAS) of the frequency response: a UAS greater than 0.6/spl times/10/sup -8/ dB/Hz implies severe deterioration of SCM performance.
机译:我们使用1300 nm边缘发射激光器和850 nm垂直腔面发射激光器(VCSEL)在300 m的62.5- / splμ/ m纤芯直径多模光纤(MMF)上模拟副载波调制(SCM)传输),用于0至30 / spl mu / m的光束偏移。我们对81个“最坏情况”光纤进行建模,同时根据2 ns / km的微分模态延迟(DMD)准则缩放带宽,以进行1300 nm中心波长的分析和4 ns / km的DMD用于850的分析,以确保按照千兆位以太网标准对最坏的5%的MMF进行建模。我们考虑数据速率为1.25和2.5 Gb / s的1至9 GHz的SCM载波频率。结果表明,对于边沿发射激光器和VCSEL,以2.5 Gb / s的速度实现低于3 dB的睁眼罚分(EOP)的SCM传输。发现VCSEL比偏心发射更适合于中心发射,而边缘发射激光器更适合于径向偏心为17至23 / spl mu / m的偏心发射。在偏移发射下,VCSEL的最佳性能区域是在载波频率为0至8 GHz时的径向偏移为17至30 / spl mu / m,在该范围内,我们观察到EOP小于5 dB,而对于边缘发射激光器,观察到在2.5至9 GHz的载频上,最佳性能区域为10至25 / spl mu / m。这意味着,如果忽略通道间串扰,则对于三个通道,对于光纤长度,应使用介于17和30 / spl mu / m之间的单个偏移发射,应实现/ spl sim / 7.5 Gb / s的VCSEL的理论总最大比特率为了使每个通道的EOP小于5 dB,最大距离为300 m。对于边缘发射激光器,两个通道的理论最大值为/ spl sim / 5 Gb / s,对于在300 m的光纤上传输,每个通道的EOP均小于3 dB。我们还演示了频率响应的可用平均斜率(UAS)如何影响SCM性能:UAS大于0.6 / spl次/ 10 / sup -8 / dB / Hz意味着SCM性能严重恶化。

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