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Forest biomass estimation using texture measurements of high-resolution dual-polarization C-band SAR data

机译:使用高分辨率双极化C波段SAR数据的纹理测量来估算森林生物量

摘要

Recent synthetic aperture radar (SAR) sensors with a capability of providing data with varying spatial resolutions, polarizations, and incidence angles have attracted greater interest for forest biomass and carbon storage estimation. This study investigates the capability of RADARSAT-2 fine-beam dual-polarization (C-HV and C-HH) data for forest biomass estimation in complex subtropical forest, with different types of processing: 1) raw intensity data (both polarizations separately and as polarization ratio) and 2) texture parameters of both polarizations (separately, jointly, and as polarization ratio). Field data (diameter at breast height and height) were collected from 53 field plots and converted to biomass (dry weight) using a newly developed allometric model. Finally, biomass estimation models were developed between SAR signatures from different processing steps and field plot biomass using stepwise multiple regression. All biomass estimation models using radar intensity data (C-HV, C-HH, and ratio of C-HV and C-HH) proved ineffective, but texture parameters derived from intensity data showed potential. We were able to estimate forest biomass amounts up to 360 t/ha with a goodness of fit of 0.78 (adjusted r2) and an rmse of 28.68 t/ha using the combination of texture parameters of both polarizations (C-HV and C-HH). However, goodness of fit could be improved to 0.91 (adjusted r2) and an rmse of 26.95 t/ha for biomass levels up to 532 t/ha using the ratio of texture parameters of C-HV/C-HH. The result is very encouraging and indicates that the dual-polarization C-band SAR sensor has a potential for the estimation of forest biomass, particularly using the polarization ratio of texture measurements, and biomass estimation can be improved substantially beyond the previously stated saturation level for C-band SAR.
机译:最新的合成孔径雷达(SAR)传感器能够提供具有变化的空间分辨率,极化和入射角的数据,已经引起了对森林生物量和碳储量估算的更大兴趣。这项研究调查了RADARSAT-2细光束双极化(C-HV和C-HH)数据用于处理不同类型处理的复杂亚热带森林中生物量的能力:1)原始强度数据(两个极化分别和2)两种极化的纹理参数(分别,共同和极化比率)。从53个田地中收集田地数据(胸高和身高处的直径),并使用新开发的异度模型将其转换为生物质(干重)。最后,使用逐步多元回归方法,在不同处理步骤的SAR信号与田间生物量之间建立了生物量估计模型。使用雷达强度数据(C-HV,C-HH以及C-HV和C-HH的比率)的所有生物量估计模型均证明无效,但是从强度数据得出的纹理参数显示出潜力。通过使用两种极化的纹理参数(C-HV和C-HH)的组合,我们能够估算出高达360吨/公顷的森林生物量,拟合优度为0.78(调整后的r2),均方根值为28.68吨/公顷。 )。但是,使用C-HV / C-HH的质地参数比率,对于高达532 t / ha的生物量水平,拟合优度可以提高到0.91(调整后的r2),均方根值为26.95 t / ha。结果非常令人鼓舞,并且表明双极化C波段SAR传感器具有估计森林生物量的潜力,尤其是使用纹理测量的极化率,并且生物量估计可以大大提高,超出先前规定的饱和度。 C波段SAR。

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