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基于灵活光子分数傅里叶变换的稳健宽范围啁啾率测量。

Robust wide-range chirp rate measurement based on a flexible photonic fractional Fourier transformer.

作者信息

Peng Di, Li Huaqing, Qin Yuwen, Li Jianping, Fu Songnian

出版信息

Opt Express. 2022 Feb 28;30(5):7750-7762. doi: 10.1364/OE.451614.

DOI:10.1364/OE.451614
PMID:35299530
Abstract

We propose a photonic-assisted approach to measure the chirp rate of a linear frequency modulation waveform (LFMW) with a long duration, based on tunable photonic fractional Fourier transform (FrFT). Since the FrFT order can be continuously tuned by varying the frequency shift in an optical frequency-shifting loop (FSL), a specific FrFT order leads the fundamental frequency component arising in the output electrical spectrum to reach its maximum value, after the photonic-to-electrical conversion. Based on the designated FrFT order and the corresponding fundamental frequency in the output electrical spectrum, the chirp rate measurement over a wide range can be accessed, even the signal-to-noise ratio (SNR) of the input LFMW is substantially low. Simulation results indicate that the chirp rate of a 0.16-ms LFMW over a frequency range from 20 GHz to 26 GHz can be precisely characterized, with a relative measurement error of less than 0.13%, under the SNR condition of 0 dB. Moreover, an unambiguous chirp-rate measurement within the range of -5200 MHz/µs to 550 MHz/µs can be achieved. Hence, the proposed chirp rate measurement is featured with broadband operation, robust noise tolerance, low-frequency detection, and long-duration LFMW characterization.

摘要

我们提出了一种基于可调谐光子分数傅里叶变换(FrFT)的光子辅助方法,用于测量长持续时间线性调频波形(LFMW)的啁啾率。由于可以通过改变光频移环(FSL)中的频移来连续调谐FrFT阶数,在光电转换之后,特定的FrFT阶数会使输出电谱中出现的基频分量达到最大值。基于指定的FrFT阶数和输出电谱中的相应基频,可以实现宽范围内的啁啾率测量,即使输入LFMW的信噪比(SNR)相当低。仿真结果表明,在0 dB的SNR条件下,对于频率范围从20 GHz至26 GHz的0.16 ms LFMW的啁啾率,可以精确表征,相对测量误差小于0.13%。此外,在-5200 MHz/µs至550 MHz/µs范围内可以实现明确的啁啾率测量。因此,所提出的啁啾率测量具有宽带操作、强大的噪声容忍能力、低频检测以及长持续时间LFMW表征的特点。

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