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Evaluation of different topographic corrections for landsat TM data by prediction of foliage projective cover (FPC) in topographically complex landscapes

机译:通过预测地形复杂的景观中的射影覆盖率(FPC)来评估Landat TM数据的不同地形校正

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摘要

The reflected radiance in topographically complex areas is severely affected by variations in topography; thus, topographic correction is considered a necessary pre-processing step when retrieving biophysical variables from these images. We assessed the performance of five topographic corrections: (i) C correction (C), (ii) Minnaert, (iii) Sun Canopy Sensor (SCS), (iv) SCS + C and (v) the Processing Scheme for Standardised Surface Reflectance (PSSSR) on the Landsat-5 Thematic Mapper (TM) reflectance in the context of prediction of Foliage Projective Cover (FPC) in hilly landscapes in north-eastern Australia. The performance of topographic corrections on the TM reflectance was assessed by (i) visual comparison and (ii) statistically comparing TM predicted FPC with ground measured FPC and LiDAR (Light Detection and Ranging)-derived FPC estimates. In the majority of cases, the PSSSR method performed best in terms of eliminating topographic effects, providing the best relationship and lowest residual error when comparing ground measured FPC and LiDAR FPC with TM predicted FPC. The Minnaert, C and SCS + C showed the poorest performance. Finally, the use of TM surface reflectance, which includes atmospheric correction and broad Bidirectional Reflectance Distribution Function (BRDF) effects, seemed to account for most topographic variation when predicting biophysical variables, such as FPC.
机译:在地形复杂区域中反射的辐射受到地形变化的严重影响;因此,从这些图像中检索生物物理变量时,地形校正被认为是必要的预处理步骤。我们评估了五种地形校正的性能:(i)C校正(C),(ii)Minnaert,(iii)太阳篷传感器(SCS),(iv)SCS + C和(v)标准化表面反射率的处理方案(PSSSR)关于Landsat-5专题测绘器(TM)反射率的预测,以预测澳大利亚东北部丘陵景观的植物射影覆盖率(FPC)。通过(i)视觉比较和(ii)对TM预测的FPC与地面测量的FPC和LiDAR(光检测和测距)得出的FPC估计值进行统计比较,评估了TM反射率的地形校正性能。在大多数情况下,PSSSR方法在消除地形影响方面表现最佳,在将地面测量的FPC和LiDAR FPC与TM预测的FPC进行比较时,可提供最佳关系和最低残留误差。 Minnaert,C和SCS + C表现最差。最后,在预测生物物理变量(例如FPC)时,使用TM表面反射率(包括大气校正和广泛的双向反射分布函数(BRDF)效果)似乎可以解释大多数地形变化。

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