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首页> 外文期刊>Applied optics >Simultaneous measurements of particle backscattering and extinction coefficients and wind velocity by lidar with a Mach-Zehnder interferometer: principle of operation and performance assessment
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Simultaneous measurements of particle backscattering and extinction coefficients and wind velocity by lidar with a Mach-Zehnder interferometer: principle of operation and performance assessment

机译:使用Mach-Zehnder干涉仪通过激光雷达同时测量粒子的反向散射和消光系数以及风速:工作原理和性能评估

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The development of remote-sensing instruments that can be used to monitor several parameters at the same time is important for the study of complex processes such as those that control climate and environment. In this paper the performance of a new concept of lidar receiver that allows for the direct measurement of aerosol and cloud optical properties simultaneously with wind velocity is investigated. This receiver uses a Mach-Zehnder interferometer. Two different configurations, either with four photometric output channels or with fringe imaging on a multichannel detector, are studied. Analytical expressions of the statistical errors are given under the assumption of Gaussian signal spectra. It is shown that similar accuracies can be achieved for both configurations. Performance modeling of the retrieval of semitransparent cloud optical scattering properties and wind velocity was done at different operation wavelengths for a Nd:YAG laser source. Results for such a lidar system onboard an aircraft flying at an altitude of 12 km show that for semitransparent clouds the best results were obtained at 355 nm, with relative standard deviations of 0.5% and 5% for the backscatter and extinction coefficients, respectively, together with a velocity accuracy of 0.2 ms~(-1). The accuracy of optical properties retrieved for boundary layer aerosols are comparable, whereas the velocity accuracy is decreased to 1 ms~(-1). Finally, an extrapolation to a large 355-nm spaceborne lidar shows accuracies in the range from 2.5% to 5% for the backscatter coefficient and from 10% to 15% for the extinction coefficient together with a vertical wind speed accuracy of better than 0.5 ms~(-1) for semitransparent clouds and boundary layer, with a vertical resolution of 500 m and a 100 shot averaging.
机译:可以同时监测多个参数的遥感仪器的开发对于研究复杂的过程(例如控制气候和环境的过程)非常重要。在本文中,研究了一种新概念的激光雷达接收器的性能,它可以与风速同时直接测量气溶胶和云的光学特性。该接收器使用马赫曾德尔干涉仪。研究了两种不同的配置,具有四个光度输出通道或在多通道检测器上的条纹成像。统计误差的分析表达式是在高斯信号频谱的假设下给出的。结果表明,两种配置均可实现相似的精度。对于Nd:YAG激光源,在不同的操作波长下对半透明云的光学散射特性和风速进行了性能建模。在以12 km的高度飞行的飞机上使用这种激光雷达系统的结果表明,对于半透明云,在355 nm处可获得最佳结果,反向散射和消光系数的相对标准偏差分别为0.5%和5%速度精度为0.2 ms〜(-1)。边界层气溶胶光学特性的精度可比,但速度精度降低到1 ms〜(-1)。最后,外推到较大的355 nm星载激光雷达,其反向散射系数的准确度范围为2.5%至5%,消光系数的准确度范围为10%至15%,垂直风速精度优于0.5 ms 〜(-1)用于半透明的云和边界层,垂直分辨率为500 m,平均射击为100。

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    《Applied optics》 |2003年第6期|共14页
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