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Calibration method for multiangle lidar measurements

机译:多角度激光雷达测量的校准方法

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摘要

A new method based on a two-angle approach is developed to determine the lidar solution constant from scanning elastic lidar data, hence providing a relative calibration for each lidar scan. Once the solution constant is determined, the vertical profiles of atmospheric extinction can be calculated. With this calibration method a minimization technique is used that replaces the linear regression used in a known two-angle approach that requires only local atmospheric homogeneity over a restricted altitude calibration range rather than overall horizontal homogeneity. Lidar signals from at least one pair of elevation angles are used, averaged in time when the system is operated in a permanent two-angle mode, or an arbitrary number of signal pairs is used, when a two-dimensional lidar scan is being processed. The method is tested extensively with synthetic data. The calibration method is a robust tool for determining the solution constant to the lidar equation and for obtaining vertical profiles of atmospheric extinction.
机译:开发了一种基于双角度方法的新方法,可以通过扫描弹性激光雷达数据确定激光雷达溶液常数,从而为每次激光雷达扫描提供相对校准。一旦确定了溶液常数,就可以计算出大气绝灭的垂直剖面。使用这种校准方法,可以使用最小化技术来代替在已知的两角度方法中使用的线性回归,该方法仅需要在受限的海拔校准范围内实现局部大气均匀性,而无需进行整体水平均匀性。当处理二维激光雷达扫描时,使用来自至少一对仰角的激光雷达信号,当系统以永久性两个角度模式运行时,时间平均,或者使用任意数量的信号对,平均时间。该方法已通过综合数据进行了广泛测试。校准方法是确定激光雷达方程的解常数和获得大气消亡垂直剖面的强大工具。

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