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Fiber-based 1.5 μm lidar vibrometer in pulsed and continuous modes

机译:脉冲和连续模式的基于光纤的1.5μm激光雷达振动计

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摘要

A fiber-based 1.5 μm heterodyne lidar that is easily switched between pulse-pair and cw modes is described. In laboratory experiments using well-controlled vibrating targets, and in computer simulations, the performance of the two modes is compared given the same average laser power. The accuracy of Doppler frequency (target velocity) estimates, and the signal-to-noise ratio in spectrally resolved plots of vibrational features, are evaluated. When the target-induced frequency modulation is wideband, pulse-pair often has clearly higher carrier-to-noise. But its advantage in signal-to-noise is smaller because combining the more numerous cw measurements improves the estimates of vibration frequencies and amplitudes. They are combined here through autocorrelation-based demodulation, one of several methods that can outperform phase-differencing.
机译:描述了一种基于光纤的1.5μm外差激光雷达,该激光雷达易于在脉冲对和cw模式之间切换。在使用控制良好的振动靶的实验室实验中,以及在计算机模拟中,在相同的平均激光功率下比较两种模式的性能。评估了多普勒频率(目标速度)估计值的准确性以及振动特征的频谱解析图中的信噪比。当目标感应的频率调制为宽带时,脉冲对通常具有明显更高的载波噪声。但是,它在信噪比方面的优势较小,因为结合更多的连续波测量值可以改善振动频率和振幅的估计。它们在这里通过基于自相关的解调进行组合,这是几种优于相位差的方法之一。

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