Considerations for single-mode fiber systems

K. Ogawa
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引用次数: 34

Abstract

The intrinsic low-dispersion and low-attenuation properties of single-mode fibers between 1.3 and 1.6 μm make them attractive for use in high-capacity, long-haul digital systems. In this paper we discuss some fundamental performance limitations — such as attenuation, bandwidth, mode-partition noise, burst-type error, and receiver sensitivities — for systems with bit rates above 274 Mb/s. Also, we discuss the maximum capacity achievable by either using a single channel at the minimum-dispersion wavelength, or multiple wavelength-multiplexed channels with equal, but necessarily lower, bit rates. We conclude that the characteristics of present laser diodes limit repeater spacing to lengths far less than the potential capacity expected from single-mode fibers. For total capacity of bit rates less than 1 Gb/s, wavelength multiplexing is found to offer longer repeater spacings than single-wavelength systems.
单模光纤系统的考虑因素
1.3 ~ 1.6 μm单模光纤固有的低色散和低衰减特性使其在大容量、长途数字系统中具有吸引力。在本文中,我们讨论了一些基本的性能限制-如衰减,带宽,模式分区噪声,突发型误差和接收器灵敏度-对于比特率高于274 Mb/s的系统。此外,我们还讨论了通过使用最小色散波长的单个信道或具有相同但必须更低的比特率的多个波长复用信道可以实现的最大容量。我们得出结论,现有激光二极管的特性限制了中继器间距的长度远远小于单模光纤的潜在容量。对于比特率小于1gb /s的总容量,发现波长复用比单波长系统提供更长的中继器间隔。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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