Photonics-based coherent wideband linear frequency modulation pulsed signal generation

Yitian Tong, Daming Han, Ran Cheng, Zhangweiyi Liu, Weilin Xie, Jie Qin, Yi Dong*

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摘要

A photonics-based scheme is proposed to generate wideband linear frequency modulation pulses with broadly tunable carrier frequencies for coherent radars. The approach integrates the concept of the microwave-photonic multiplication and coherent beating to enable reconfiguration of the bandwidth and carrier frequency of the generated pulses. The phase fluctuation between two beating arms is suppressed by a stabilization technique based on an optical phase-locked loop to maintain the pulse-to-pulse phase coherence. Further, we also demonstrate a coherent radar system, including the generation, wireless transmission and detection of the radar echo signal in the Ka-band. The coherent integration of several echo signals is achieved. About 8 dB of signal-to-noise ratio improvement is obtained with every ten-fold of integration times. The range resolution of the radar system is ∼3.75 cm, which is close to the theoretical prediction.

源语言英语
页(从-至)1023-1026
页数4
期刊Optics Letters
43
5
DOI
出版状态已出版 - 1 3月 2018

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Tong, Y., Han, D., Cheng, R., Liu, Z., Xie, W., Qin, J., & Dong, Y. (2018). Photonics-based coherent wideband linear frequency modulation pulsed signal generation. Optics Letters, 43(5), 1023-1026. https://doi.org/10.1364/OL.43.001023