激光雷达
高光谱成像
遥感
光化学反射率指数
分光计
测距
环境科学
内容(测量理论)
波形
植被(病理学)
反射率
叶面积指数
光学
归一化差异植被指数
数学
地质学
计算机科学
物理
植物
生物
电信
雷达
医学
大地测量学
病理
数学分析
作者
Li Wang,Gang Sun,Zheng Niu,Shuai Gao,Hailang Qiao
标识
DOI:10.1080/2150704x.2014.960608
摘要
A novel hyperspectral full-waveform light detection and ranging (LiDAR) system was proposed in this study. First, the optical set-up of this system was introduced. Second, the spectral reflectance of two kinds of leaves was measured using this system as well as a common spectrometer. A workflow was proposed to show how to calculate spectral reflectance from the LiDAR data. Three vegetation indices (VIs) – simple ratio index, normalized difference vegetation index and photochemical reflectance index – were calculated using the reflectance derived from the data collected by these two instruments. Finally, the LiDAR-derived VIs were used to test for the estimation of leaf biochemical contents. Results show that: (1) LiDAR reflectance is different from that measured by spectrometer, but the LiDAR and spectrometer spectral shapes are clearly similar; (2) leaf biochemical contents can be successfully estimated by LiDAR-derived VIs with a root mean square error of 0.46–0.55% for nitrogen content, 1.42–2.98 mg g−1 for chlorophyll content and 0.35–0.56 mg g−1 for carotenoid content. These results demonstrate the possibilities for estimating leaf biochemical contents using the new hyperspectral full-waveform LiDAR data.
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