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Mitigating weak dispersion in affordable RF-over-fiber channels

机译:在实惠的RF过纤维通道中减轻弱分散

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A dispersion-compensating filter for next-generation low-cost analog and digital optical links is developed. In these high-frequency optical channels, even weak dispersion can be detrimental to data encoding (e.g., radar detection). Dispersion-compensating filters must be affordable for these low-cost channels, and they must be reliable for weak dispersion channels. In this paper, we design a dispersion-compensating filter based on three properties of the analog channel: weak modulation depth, a spectrally bounded signal, and a low-dispersion channel. We calculate the fundamental performance limits of the channel with and without the filter and quantify the improvement. Furthermore, numerical simulations are taken to estimate the filter's performances for both pulse amplitude modulation digital channels and for analog ones. The simulations agree with the analytical derivation, and, in both cases, the filter's integration improves the channels' performances considerably. (C) 2020 Optical Society of America
机译:开发了用于下一代低成本模拟和数字光链路的分散补偿滤波器。在这些高频光学通道中,甚至弱分散可能对数据编码有害(例如,雷达检测)。这些低成本通道必须负担得起的分散滤光片,并且对于弱分散通道,它们必须可靠。在本文中,我们基于模拟通道的三个性质设计了一种色散补偿滤波器:弱调制深度,光谱有界信号和低色散信道。我们计算通道的基本性能限制,无滤波器并量化改进。此外,采用数值模拟来估计滤波器对脉冲幅度调制数字信道和模拟滤波器的性能。模拟同意分析推导,并且在这两种情况下,过滤器的集成可以显着提高通道的性能。 (c)2020美国光学学会

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    《Applied optics》 |2020年第13期|共9页
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