Optik - International Journal for Light and Electron Optics | Vol.159, Issue.0 | | Pages
Data inversion method for dual-frequency Doppler lidar based on Fabry-Perot etalon quad-edge technique
In order to realize the accurate inversion of lidar data, the calibration method for the ratio of Fabry-Perot etalon (FPE) transmission to reflection curve is given, and the reliability of the method is verified by simulation test. The effective ratio of FPE transmission to reflection for the actual atmospheric detection is analyzed, and a nonlinear iterative algorithm for simultaneous inversion of wind field and backscatter ratio, as well as the specific iterative steps, initial value determination methods and corresponding error formula of parameters are proposed. The simulation results show that no matter whether the backscatter ratio
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Data inversion method for dual-frequency Doppler lidar based on Fabry-Perot etalon quad-edge technique
In order to realize the accurate inversion of lidar data, the calibration method for the ratio of Fabry-Perot etalon (FPE) transmission to reflection curve is given, and the reliability of the method is verified by simulation test. The effective ratio of FPE transmission to reflection for the actual atmospheric detection is analyzed, and a nonlinear iterative algorithm for simultaneous inversion of wind field and backscatter ratio, as well as the specific iterative steps, initial value determination methods and corresponding error formula of parameters are proposed. The simulation results show that no matter whether the backscatter ratio
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error formula italicrinf locpost inf iterative steps initial value determination methods calibration method wind speed measurement dynamic range atmospheric detection ratio of fabryperot etalon fpe transmission to reflection curve accurate inversion of lidar backscattering photons simultaneous inversion of wind field and backscatter ratio limit process nonlinear iterative algorithm backscatter ratio italicrinf locpostinf italic 50000
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