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Methodology for the independent calibration of Raman backscatter water-vapor lidar systems

机译:拉曼背向散射水汽激光雷达系统独立校准的方法

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摘要

We present a method for the independent Calibration of Raman backscatter water-vapor lidar systems. Particular attention is given to the resolution of instrumental changes in the short and the long terms. The method reposes on the decomposition of the instrument function, which allows the lidar calibration coefficient to be re-expressed as the product of two terms, one describing the instrumental transmission and detection efficiency and the other describing the wavelength-dependent convolution of the Raman backscatter cross sections with the instrument function. The origins of changes in instrument response necessitate the experimental determination of the system detection efficiency. Two external light sources for calibration are assessed: zenith observation of diffuse sunlight and a xenon arc lamp. The results favor use of the diffuse-sunlight measurement but highlight the need for simultaneous sunpho-tometer measurements to constrain modeled aerosol optical properties. Quantum mechanical models of the Raman cross sections are described, and errors in determining the cross sections and their convolution with the instrument function are discussed in detail. The calibration coefficients deduced by using the independent method are compared with coefficients deduced from Vaisala H-Humicap radiosonde measurements. These results agree to within current calibration errors (15%, unconstrained aerosol parameters), and a change in calibration coefficient following instrument modification is reproduced satisfactorily. Results from modeling and intercomparison studies are extended to estimate the calibration accuracy and the precision of the diffuse-sunlight method with constrained modeled aerosol parameters. Changes in the calibration coefficient in the short and the long terms should be resolved to 4(6)% and 6(9)%, respectively, which is comparable or better than the precision of existing dependent methods of calibration. The reduction of the absolute calibration error remains an outstanding issue for all calibration methods.
机译:我们提出了一种独立校准拉曼反向散射水汽激光雷达系统的方法。特别注意短期和长期的工具性变化解决方案。该方法以仪器功能的分解为基础,该功能允许将激光雷达校准系数重新表达为两项的乘积,一项描述仪器的传输和检测效率,另一项描述拉曼背向散射的波长相关卷积具有仪器功能的横截面。仪器响应变化的起源需要对系统检测效率进行实验确定。评估了两个外部校准光源:天顶观测散射的阳光和氙弧灯。结果有利于使用漫射阳光测量,但强调了同时进行日光计测量以约束建模的气溶胶光学特性的需要。描述了拉曼横截面的量子力学模型,并详细讨论了确定横截面的误差及其与仪器函数的卷积。将使用独立方法得出的校准系数与从维萨拉H-Humicap探空仪测量得出的系数进行比较。这些结果符合当前的校准误差(15%,不受限制的气溶胶参数),并且令人满意地再现了仪器修改后校准系数的变化。扩展了建模和比对研究的结果,以估计受约束的建模气溶胶参数的漫射阳光方法的校准精度和精度。短期和长期校准系数的变化应分别解决为4(6)%和6(9)%,这与现有的相关校准方法的精度相当或更好。减少绝对校准误差对于所有校准方法仍然是一个突出的问题。

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