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High-range-resolution velocity-estimation techniques for coherent Doppler lidars with exponentially shaped laser pulses

机译:具有指数形激光脉冲的相干多普勒激光雷达的高分辨率高分辨率速度估计技术

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摘要

On the basis of an analysis of the autocovariance of the complex heterodyne signal, some novel algorithms are derived and investigated for recovering the nonuniform Doppler-velocity coherent-lidar profiles within the lidar resolution interval conditioned by the sensing laser-pulse length. The case of exponentially shaped sensing laser pulses is considered. The algorithm performance and efficiency are studied and illustrated by computer simulations (based on the use of pulse models and real laser pulses), taking into account the influence of additive noise and radial-velocity fluctuations. It is shown that, at some reasonable number of signal realizations used and with appropriate data processing to suppress the noise effects, the Doppler-velocity profiles can be determined with a considerably shorter resolution interval in comparison with that (usually accepted as a lower bound) determined by the pulse length. (C) 2002 Optical Society of America. [References: 22]
机译:在分析复杂外差信号的自协方差的基础上,推导和研究了一些新算法,用于恢复由感测激光脉冲长度所限制的激光雷达分辨率区间内的非均匀多普勒速度相干激光雷达轮廓。考虑了指数形状的感测激光脉冲的情况。考虑到附加噪声和径向速度波动的影响,通过计算机仿真(基于脉冲模型和实际激光脉冲的使用)对算法的性能和效率进行了研究和说明。结果表明,在使用一定数量的信号实现方式和适当的数据处理以抑制噪声影响的情况下,可以确定多普勒速度剖面,而与之相比(通常认为是下限)由脉冲长度决定​​。 (C)2002年美国眼镜学会。 [参考:22]

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