What Do We Need To Get Great Link Performance?

C. Cox, E. Ackerman, J. Prince
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引用次数: 17

Abstract

It is well known that the RF performance of optical fiber links falls short of what is desired, and often required. These seem to be the facts of life: links using colmmercially available components have at least 20 dB of RF loss, their noise figures are even greater than their loss, and their dynamic ranges are marginal to acceptable [ 11. Further, all three of these performance parameters degrade significantly with increasing frequency. This sitate of affairs is in stark contrast with the fundamental limits of link performance [2], which have shown that low loss, low noise figure, high linearity links should be possible, even up to fairly high frequencies. So why have we not been able to realize links with such performance? We will pursue the answer to this question by hypothesizing a set of link requirements and seeing what level of device performance would be required to meet it. Assume that we desire a link with ,an RF-to-RF gain (GI) of -3 dB over a bandwidth of less than one octave, a noise figure (NF) of 6 dB, and an intermodulation-free dynamic range (IMFDR) of 145 dB in a 1 Hz bandwidth. For the purposes of this discussion we will also limit consideration to amplifierless links using intensity modulation with direct detection (IMDD) and with passive impedance matching at the input and output ends of the link.
我们需要什么来获得良好的链接性能?
众所周知,光纤链路的射频性能往往达不到预期的要求。这些似乎是生活中的事实:使用商用元件的链路至少有20db的射频损耗,它们的噪声系数甚至大于它们的损耗,它们的动态范围是边缘到可以接受的[11]。此外,这三个性能参数都随着频率的增加而显著降低。这种情况与链路性能的基本限制形成鲜明对比[2],这表明低损耗、低噪声系数、高线性度的链路应该是可能的,甚至可以达到相当高的频率。那么,为什么我们不能实现与这种性能的联系呢?我们将通过假设一组链路需求并查看满足这些需求所需的设备性能水平来寻求这个问题的答案。假设我们想要一个链路,在小于一个倍频程的带宽上,rf - rf增益(GI)为-3 dB,噪声系数(NF)为6 dB,在1hz带宽下,无互调动态范围(IMFDR)为145 dB。为了本讨论的目的,我们还将限制考虑使用具有直接检测(IMDD)的强度调制和在链路的输入和输出端进行无源阻抗匹配的无放大器链路。
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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