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Photonic approach to broadband instantaneous microwave frequency measurement with improved accuracy

机译:光子学方法用于提高宽带瞬时微波频率的精度

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摘要

A photonic approach for instantaneous microwave frequency measurement over a wide bandwidth is proposed and experimentally demonstrated based on the fading effect of the fiber. In this scheme, three lights with different wavelengths and three sections of optical fiber are used to construct the frequency-dependent amplitude comparison functions (ACFs), using a phase modulation along with an intensity modulation. The unknown microwave frequency can be determined from the intersection of three ACFs. The method can not only provide extended measurable range of the microwave frequency, but also improve the accuracy by choosing an ACF with a large slope. The measurement errors as demonstrated in the experimental results are within ± 90 MHz in the frequency range of 0.5-20 GHz.
机译:提出了一种在宽带宽上进行瞬时微波频率测量的光子方法,并基于光纤的衰落效应进行了实验证明。在该方案中,将具有不同波长的三束光和三段光纤用于通过使用相位调制和强度调制来构建频率相关的幅度比较函数(ACF)。可以从三个ACF的交点确定未知的微波频率。该方法不仅可以提供扩展的微波频率可测量范围,而且可以通过选择大斜率的ACF来提高精度。实验结果表明,在0.5-20 GHz的频率范围内,测量误差在±90 MHz范围内。

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