海洋激光雷达水深测量及水体光学参数反演误差分析
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北京空间机电研究所

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广西创新驱动发展专项(No.GuikeAA18118038),国家自然科学基金(Nos.61705007,61705160),


Error analysis of bathymetry and water optical parameters inversion by ocean LiDAR
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Beijing Institute of Space Mechanics Electricity

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    摘要:

    基于自研机载双频海洋剖面激光雷达获取的航飞试验回波数据,分析因波浪折射和水体散射引入的水深测量误差及其修正方法,提出基于Genetic Algorithm(GA)和Levenberg-Marquarelt(LM)算法相结合的波浪折射修正方法;理论分析表明该波浪折射修正方法相比单一LM算法反演海浪轮廓的均方根误差(Root Mean Square Error,RMSE)降低约50%。利用实测回波信号中的海水剖面后向散射部分开展水体光学参数反演方法研究,并理论分析基于Fernald后向迭代积分法反演水体光学参数引入的误差及其影响因素,发现当“粒子激光雷达比”的估计值相对真值偏差为+a%比-a%时,其反演水体漫射衰减系数和180°体积散射系数的误差更小。

    Abstract:

    Based on the flight test echo data obtained by self-developed airborne dual-frequency ocean profile LiDAR, the bathymetric error caused by wave refraction and water scattering was analyzed, and the correction method was proposed based on the combination of Genetic Algorithm (GA) and Levenberg-Marquarelt (LM) algorithm. Theoretical analysis shows that compared with the signal LM algorithm, this wave refraction correction method reduces the Root Mean Square Error (RMSE) of the inversion of sea wave profile by about 50%. The inversion method of water body optical parameters based on the seawater profile backscattering part of the measured echo signal was researched , and the errors and influencing factors introduced in the inversion of water optical parameters based on the Fernald backward iterative integration method were theoretically analyzed, it is found that when the estimated value of the “particle laser radar ratio” deviates by a% from the true value compared to –a%, the errors in the inversion of water body diffuse attenuation coefficient and 180° volume scattering coefficient are smaller.

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  • 收稿日期:2025-03-26
  • 最后修改日期:2025-06-15
  • 录用日期:2025-06-24
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