Coherent Lidar Measurement of Range-Resolved Tropospheric Water Vapor Concentration and Backscattered Signal Statistics

R. Hardesty
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引用次数: 1

Abstract

The sensitivity advantages of coherent detection can potentially be employed to make range-resolved differential absorption lidar (DIAL) measurements of atmospheric species even when transmit pulse energies are relatively low. By operating in a shot-noise-limited mode, coherent lidars often obtain average carrier-to-noise ratios (CNR's) as much as 30 dB higher than would be measured with equivalent direct-detection systems. This apparent advantage in average CNR is at least partially offset by the characteristically large fluctuation in the instantaneous received irradiance due to target speckle effects.1 To measure mean backscattered-signal irradiance accurately, the variance due to these fluctuations must be reduced to an acceptable level by averaging.
距离分辨对流层水汽浓度的相干激光雷达测量与后向散射信号统计
相干探测的灵敏度优势可以潜在地用于距离分辨差分吸收激光雷达(DIAL)测量大气物质,即使发射脉冲能量相对较低。通过在短噪声限制模式下工作,相干激光雷达通常可以获得比等效直接探测系统高30 dB的平均载波噪声比(CNR)。这种平均CNR的明显优势至少部分地被目标散斑效应引起的瞬时接收辐照度的特征大波动所抵消为了准确地测量平均后向散射信号辐照度,必须通过平均将这些波动引起的方差降低到可接受的水平。
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