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首页> 外文期刊>International journal of applied earth observation and geoinformation >Limitations of high resolution satellite stereo imagery for estimating canopy Check for height in Australian tropical savannas
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Limitations of high resolution satellite stereo imagery for estimating canopy Check for height in Australian tropical savannas

机译:高分辨率卫星立体图像的局限性估算澳大利亚热带大草原高度的遮篷检查

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摘要

Obtaining reliable measures of tree canopy height across large areas is a central element of forest inventory and carbon accounting. Recent years have seen an increased emphasis on the use of active sensors like Radar and airborne LiDAR (light detection and scanning) systems to estimate various 3D characteristics of canopy and crown structure that can be used as predictors of biomass. However, airborne LiDAR data are expensive to acquire, and not often readily available across large remote landscapes. In this study, we evaluated the potential of stereo imagery from commercially available Very High Resolution (VHR) satellites as an alternative for estimating canopy height variables in Australian tropical savannas, using a semi-global dense matching (SGM) image-based technique. We assessed and compared the completeness and vertical accuracy of extracted canopy height models (CHMs) from GeoEye 1 and WorldView 1 VHR satellite stereo pairs and summarised the factors influencing image matching effectiveness and quality.
机译:在大面积上获得可靠的树冠高度措施是森林库存和碳核算的核心要素。近年来已经有人提高了强调使用雷达和空中激光雷达(光检测和扫描)系统等有源传感器的使用,以估计可以用作生物质预测因子的树冠和冠结构的各种3D特征。然而,空气传播的LIDAR数据可以获得昂贵,并且在大型远程景观中通常很容易获得。在这项研究中,我们评估了从商业上获得的非常高分辨率(VHR)卫星的立体图像的潜力,作为使用基于半全局密集匹配(SGM)图像的技术估算澳大利亚热带大草原中的冠层高度变量的替代方案。我们评估并比较了来自Geoeye 1和WorldView 1 VHR卫星立体对的提取的冠层高度模型(CHMS)的完整性和垂直准确性,并总结了影响图像匹配效果和质量的因素。

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