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Wavelength selection of bidirectional laser transmission based on Monte Carlo method
Institution:1. Institute of Fluid Mechanics and Aerodynamics, Technische Universität Darmstadt, 64287 Darmstadt, Germany;2. AOM-Systems GmbH, 64646 Heppenheim, Germany;1. School of Aeronautical Science and Engineering, Beihang University, 37 Xueyuan Road, Haidian District, Beijing 100191, China;2. Aero Engine Academy of China, Beijing 101304, China
Abstract:The laser detection technology in uncertain and dynamic environments is of utmost importance in many fields. A model of transient radiative transfer of bidirectional path laser based on Monte Carlo method is developed to investigate the optimum wavelength of active detector at complex atmospheric conditions. The radiative parameters of atmosphere are calculated by HITRAN database and Mie theory at several typical atmospheric conditions including the standard atmosphere, urban aerosol, and radiation fog. Transmission characteristics for five spectral bands at the above atmospheric conditions are calculated by this model. The optimal transmission ability occurred in bands 0.2–0.5, 1.4–1.6, and 0.75–1.25 μm on the condition of standard atmosphere, urban aerosol, and radiation fog, respectively. All results provide effective reference and basic support for choosing the optimal spectral band for active detection.
Keywords:Transient radiative transfer  Active laser detection  Imaging simulation  Atmospheric scattering
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