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Building blocks for a two-frequency laser lidar-radar: a preliminary study

机译:两频激光雷达雷达的构建块:初步研究

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A new principle of lidar-radar is theoretically and experimentally investigated. The proposed architecture is based on the use of an rf modulation of the emitted light beam and a direct detection of the backscattered intensity. Use of a radar-processing chain allows one to obtain range and Doppler measurements with the advantages of lidar spatial resolution. We calculate the maximum range of this device, taking into account different possible improvements. In particular, we show that use of a pulsed two-frequency laser and a spatially multimode optical preamplification of the backscattered light leads to calculated ranges larger than 20 km, including the possibility of both range and Doppler measurements. The building blocks of this lidar-radar are tested experimentally: The radar processing of an rf-modulated backscattered cw laser beam is demonstrated at 532 nm, illustrating the Doppler and identification capabilities of the system. In addition, signal-to-noise ratio improvement by optical preamplification is demonstrated at 1.06 μm. Finally, a two-frequency passively Q-switched Nd:YAG laser is developed. This laser then permits two-frequency pulses with tunable pulse duration (from 18 to 240 ns) and beat frequency (from 0 to 2.65 GHz) to be obtained.
机译:理论上和实验上研究了激光雷达-雷达的新原理。所提出的体系结构是基于对发射光束的射频调制的使用以及对反向散射强度的直接检测。雷达处理链的使用可以使人获得激光雷达空间分辨率优势的距离和多普勒测量。考虑到各种可能的改进,我们计算了该设备的最大范围。特别是,我们表明,使用脉冲二频激光和空间多模光学预放大后向散射光会导致计算出的距离大于20 km,包括距离和多普勒测量的可能性。该激光雷达的构建基块已通过实验测试:在532 nm处演示了RF调制后向散射连续激光束的雷达处理过程,说明了系统的多普勒和识别能力。另外,证明了通过光学前置放大的信噪比改善为1.06μm。最后,研制了一种两频被动调Q Nd:YAG激光器。然后,该激光器允许获得具有可调脉冲持续时间(从18到240 ns)和拍频(从0到2.65 GHz)的双频脉冲。

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