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Impact of Macrobend Loss on the Bandwidth of Standard and Bend-Optimized Multimode Fibers

机译:宏弯曲损耗对标准和弯曲优化多模光纤带宽的影响

摘要

10 Gigabit Ethernet (GbE) demands faster optical sources to support high modulation rates. At the same time, the allowable margin in the 10 GbE link power budget is decreasing. This means that a 10 GbE system is unable to support as many tight bends, and it is more difficult to avoid the costly downtime that results when the allowable margin is exceeded. The recent introduction of bend-optimized (BO) multimode fiber (MMF) provides a clear solution. 850 nm vertical cavity surface emitting lasers (VCSELs) and MMFs have long been the most cost effective choice for short reach premise applications. As will be shown, the combination of BO-MMF with VCSELs is even more attractive.Historically, MMF systems operating at low bit rates of 10-100 Mbps used light-emitting diodes (LED) sources, which launch nearly equal power into every fibermode. This launch is approximated by the overfilled launch (OFL), which is still used to characterize the core diameter and numerical aperture of MMF. Unlike LEDs, VCSELs typically underfill the fiber core and are better represented by an encircled flux launch (EFL). Using OFL to evaluate a VCSEL-based MMF system could therefore produce inaccurate and misleading results. A recent study [1] characterized the macrobend loss of MMF with overfilled and restricted mode offset launch conditions. In this study, the MMFs performance with an EFL is evaluated, which is a more relevant launch condition for laser transmission. The impact of both launch conditions, OFL and EFL, on MMF performance is studied and compared.We characterize macrobend losses at small bend radii and their impact on thebandwidth for both standard 50/125 um MMF and a newly introduced BO-MMF.In addition, the 10 GbE link performance is also evaluated using the IEEE link model P802.3ae3.The simulation results illustrate that both macrobend loss and bandwidth are vital to the overall optical link performance. The 10 GbE link performance of the standard fiber deteriorates with macrobends, while the bend-optimized fiber is insensitive to the deployment conditions.
机译:10 Gb以太网(GbE)需要更快的光源来支持高调制速率。同时,10 GbE链路功率预算中的允许余量正在减少。这意味着10 GbE系统无法支持那么多弯曲,并且更难避免因超出允许余量而导致的代价高昂的停机时间。弯曲优化(BO)多模光纤(MMF)的最新推出提供了明确的解决方案。 850 nm垂直腔表面发射激光器(VCSEL)和MMF长期以来一直是短距离前提应用中最具成本效益的选择。如图所示,BO-MMF与VCSEL的结合更具吸引力。从历史上看,以10-100 Mbps的低比特率运行的MMF系统使用发光二极管(LED)光源,该光源向每种光纤模式发射几乎相等的功率。用过量填充的发射(OFL)估算该发射,该溢出仍用于表征MMF的芯直径和数值孔径。与LED不同,VCSEL通常未填充光纤纤芯,并且可以通过环绕的通量发射(EFL)更好地表示。因此,使用OFL评估基于VCSEL的MMF系统可能会产生不准确和误导性的结果。最近的一项研究[1]描述了MMF在过度填充和受限模式偏移发射条件下的宏弯损失。在这项研究中,评估了带有EFL的MMF的性能,这是与激光传输更相关的发射条件。研究并比较了OFL和EFL两种发射条件对MMF性能的影响,我们针对标准弯曲50/125 um MMF和新推出的BO-MMF表征了小弯曲半径下的宏弯损耗及其对带宽的影响。此外,还使用IEEE链路模型P802.3ae3对10 GbE链路性能进行了评估。仿真结果表明,宏弯损耗和带宽对于整个光链路性能至关重要。标准光纤的10 GbE链路性能随着宏弯而变差,而弯曲优化的光纤对部署条件不敏感。

著录项

  • 作者

    Li Ying;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 EN
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