研究目的
To address the problem of fast estimation of blue-green laser transmission characteristics through the fluctuating sea surface, which is important for correcting operating parameters, detection depth, and anti-detection warning in airborne LiDAR applications.
研究成果
The proposed fast analysis method for blue-green laser transmission through a wind-driven dynamic sea surface can reduce the time consumption by 70% compared with the traditional method. The statistical results suggest that the refraction angles and transmittance of pulse spots on the fluctuating rough sea surface are generally stable under different wind conditions, providing a basis for the future fast computation of airborne LiDAR transmission in complex environments.
研究不足
The study did not consider other relevant factors on the dynamic complex sea surface, such as foams, tides, other random fluctuations, and special wave patterns beyond the description range of the PM spectrum.