Research on the application of optoelectronic oscillators in airborne radar operational environment

Shen Dong, Yuqi Tan, Ang Liu, Xingwei Ye, Junxiang Xiao, Yuhao Yang
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Abstract

The spectral purity of transmitted signal plays the key role in the application of modern airborne radar. Microwave photonic signal sources based on photoelectric oscillators (OEO) can directly generate high frequency local oscillator signal, and its phase noise level is significantly better than that of traditional microwave local oscillators. Currently, there are limited researches on the application of the photoelectric oscillator in the airborne practical environment, while the operational environment of the airborne radar is extremely harsh. This will hinder the practicality of the photoelectric oscillator in the airborne radar. In this paper, the key role of phase noise in airborne radar scene detection is analyzed first. The influence of different signal forms on the phase noise of the transmitted excitation signal in radar is calculated, and the principle of reducing phase noise to improve the detection performance of airborne radar is summarized. Based on the design framework of the optical oscillator, the phase noise level of the optical oscillator in the airborne vibration environment is analytically analyzed and numerically simulated. The physical model and empirical formula of the influence of the phase noise of the optical oscillator in vibrational environment are established. Finally, the validity of the theory of phase noise deterioration in the vibrational environment is verified by the vibration-test-platform experiment. Combined with the test results, some suggestions for improving the design of the photoelectric oscillator for airborne radar in the actual combat environment are summarized. This work lays a good foundation for the application of photoelectric oscillator in airborne radar.
光电振荡器在机载雷达运行环境中的应用研究
传输信号的光谱纯度在现代机载雷达的应用中起着关键作用。基于光电振荡器(OEO)的微波光子信号源可直接产生高频本振信号,其相位噪声水平明显优于传统微波本振。目前,关于光电振荡器在机载实际环境中应用的研究还很有限,而机载雷达的工作环境又极其恶劣。这将阻碍光电振荡器在机载雷达中的实用性。本文首先分析了相位噪声在机载雷达场景探测中的关键作用。计算了不同信号形式对雷达传输激励信号相位噪声的影响,总结了降低相位噪声以提高机载雷达探测性能的原理。基于光振荡器的设计框架,对光振荡器在机载振动环境下的相位噪声电平进行了分析和数值模拟。建立了振动环境下光振荡器相位噪声影响的物理模型和经验公式。最后,通过振动测试平台实验验证了振动环境下相位噪声劣化理论的正确性。结合试验结果,总结出了在实战环境中改进机载雷达光电振荡器设计的一些建议。这项工作为光电振荡器在机载雷达中的应用奠定了良好的基础。
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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