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SS-Minnaert:改进的植被地形校正方法

吕悦 李大成 徐兆鹏 杨毅 胡志恒

中国空间科学技术(中英文)2025,Vol.45Issue(3):164-174,11.
中国空间科学技术(中英文)2025,Vol.45Issue(3):164-174,11.DOI:10.16708/j.cnki.1000-758X.2025.0048

SS-Minnaert:改进的植被地形校正方法

SS-Minnaert:an improved vegetation topographic correction method

吕悦 1李大成 1徐兆鹏 2杨毅 1胡志恒2

作者信息

  • 1. 太原理工大学 矿业工程学院,太原 030024
  • 2. 中国资源卫星应用中心,北京 100094
  • 折叠

摘要

Abstract

Terrain effects cause significant deviations to the surface reflectance of remote sensing data,especially in the scenario of large solar zenith angle and significant surface heterogeneity.The traditional terrain correction methods frequently fall short in fully compensating for the scattering effects induced by uneven terrain.To address the inadequacy of terrain correction methods in instances of intense surface scattering,the SS-Minnaert model,a terrain correction approach that accounts for solar zenith angle and surface heterogeneity,is developed in response to a detailed analysis of terrain-induced errors in vegetated regions.The model's accuracy is validated using reflectance simulations from the three-dimensional discrete anisotropic radiative transfer(DART)model.The results indicate that the SS-Minnaert model reduces RMSE by 0.036 to 0.092 in the green,red,and near-infrared bands for solar zenith angles greater than 40°,and by 0.004 to 0.031 for angles less than 40°.Further quantitative analysis demonstrates the SS-Minnaert model's superior performance in terrain correction over mainstream models at solar zenith angles beyond 40°.For solar zenith angles below 40°,the SS-Minnaert model exhibits comparable topographic correction proficiency to established VECA and Teillet models in the near-infrared band.In the red and green bands,the performance is even better.In summary,the SS-Minnaert model markedly enhances the Minnaert model by integrating the dual influences of solar zenith angle and surface heterogeneity,demonstrating a terrain correction effect superior across multiple bands,particularly at high solar zenith angles where the improvement is notably significant.

关键词

地形校正/三维辐射传输模型/森林冠层/Minnaert模型/散射效应

Key words

terrain correction/three-dimensional radiation transfer model/forest canopy/minnaert model/scattering effect

分类

天文与地球科学

引用本文复制引用

吕悦,李大成,徐兆鹏,杨毅,胡志恒..SS-Minnaert:改进的植被地形校正方法[J].中国空间科学技术(中英文),2025,45(3):164-174,11.

基金项目

国家重点研发计划(2022YFB3903000) (2022YFB3903000)

中国空间科学技术(中英文)

OA北大核心

1000-758X

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