Estimating LAI for Cotton Using Multisource UAV Data and a Modified Universal Model
文献类型: 外文期刊
第一作者: Yan, Puchen
作者: Yan, Puchen;Feng, Yangming;Kang, Shaozhong;Yan, Puchen;Feng, Yangming;Kang, Shaozhong;Han, Qisheng
作者机构:
关键词: UAV; LiDAR; multispectral; LAI; multi-model comparison; machine learning; gap fraction model
期刊名称:REMOTE SENSING ( 影响因子:5.349; 五年影响因子:5.786 )
ISSN:
年卷期: 2022 年 14 卷 17 期
页码:
收录情况: SCI
摘要: Leaf area index(LAI) is an important indicator of crop growth and water status. With the continuous development of precision agriculture, estimating LAI using an unmanned aerial vehicle (UAV) remote sensing has received extensive attention due to its low cost, high throughput and accuracy. In this study, multispectral and light detection and ranging (LiDAR) sensors carried by a UAV were used to obtain multisource data of a cotton field. The method to accurately relate ground measured data with UAV data was built using empirical statistical regression models and machine learning algorithm models (RFR, SVR and ANN). In addition to the traditional spectral parameters, it is also feasible to estimate LAI using UAVs with LiDAR to obtain structural parameters. Machine learning models, especially the RFR model (R-2 = 0.950, RMSE = 0.332), can estimate cotton LAI more accurately than empirical statistical regression models. Different plots and years of cotton datasets were used to test the model robustness and generality; although the accuracy of the machine learning model decreased overall, the estimation accuracy based on structural and multisources was still acceptable. However, selecting appropriate input parameters for different canopy opening and closing statuses can alleviate the degradation of accuracy, where input parameters select multisource parameters before canopy closure while structural parameters are selected after canopy closure. Finally, we propose a gap fraction model based on a LAI(max) threshold at various periods of cotton growth that can estimate cotton LAI with high accuracy, particularly when the calculation grid is 20 cm (R-2 = 0.952, NRMSE = 12.6%). This method does not require much data modeling and has strong universality. It can be widely used in cotton LAI prediction in a variety of environments.
分类号:
- 相关文献
作者其他论文 更多>>
-
Composite microbial agent improves cotton yield and resource use efficiency under mild salt stress by optimizing plant resource allocation
作者:Zhao, Xiao;Guo, Panpan;Wu, Xiong;Zhu, Meng;Kang, Shaozhong;Du, Taisheng;Kang, Jian;Chen, Jinliang;Tong, Ling;Ding, Risheng;Zhao, Xiao;Guo, Panpan;Wu, Xiong;Zhu, Meng;Kang, Shaozhong;Du, Taisheng;Kang, Jian;Chen, Jinliang;Tong, Ling;Ding, Risheng;Zhao, Xiao;Guo, Panpan;Wu, Xiong;Zhu, Meng;Kang, Shaozhong;Du, Taisheng;Kang, Jian;Chen, Jinliang;Tong, Ling;Ding, Risheng;Xu, Wanli;Tang, Guangmu
关键词:Plant growth-promoting rhizobacteria; Cotton growth; Fiber quality; Irrigation water productivity; Nitrogen partial factor productivity; Rhizosphere microorganism
-
White film cover improves water productivity and reduces carbon emissions of spring wheat farmland in the arid region of Northwest China
作者:Jiao, Fengli;Wang, Xianqi;Gao, Jia;Dong, Zhiduo;Li, Xinlong;Kang, Shaozhong;Du, Taisheng;Tong, Ling;Kang, Jian;Ding, Risheng;Jiao, Fengli;Wang, Xianqi;Gao, Jia;Dong, Zhiduo;Li, Xinlong;Kang, Shaozhong;Du, Taisheng;Tong, Ling;Kang, Jian;Ding, Risheng;Jiao, Fengli;Wang, Xianqi;Gao, Jia;Dong, Zhiduo;Li, Xinlong;Kang, Shaozhong;Du, Taisheng;Tong, Ling;Kang, Jian;Ding, Risheng;Xu, Wanli;Tang, Guangmu
关键词:Film mulching; Net ecosystem carbon exchange; Photosynthetic characteristics; CO2 emission; CO2 absorption
-
Grain yield and water productivity of maize under deficit irrigation and salt stress: Evidences from field experiment and literatures
作者:Gao, Jia;Li, Lin;Ding, Risheng;Kang, Shaozhong;Du, Taisheng;Tong, Ling;Kang, Jian;Gao, Jia;Li, Lin;Ding, Risheng;Kang, Shaozhong;Du, Taisheng;Tong, Ling;Kang, Jian;Gao, Jia;Li, Lin;Ding, Risheng;Kang, Shaozhong;Du, Taisheng;Tong, Ling;Kang, Jian;Xu, Wanli;Tang, Guangmu
关键词:Regulated deficit irrigation; Salt stress; Water productivity; Evapotranspiration; Stomatal characteristics
-
Long-term saline water irrigation affected soil carbon and nitrogen cycling functional profiles in the cotton field
作者:Zhou, Shuang;Wang, Guangshuai;Han, Qisheng;Ning, Huifeng;Gao, Yang;Sun, Jingsheng;Zhou, Shuang;Zhang, Junpeng;Dang, Hongkai;Ning, Huifeng;Gao, Yang
关键词:soil metagenomics; saline water irrigation; carbon cycle; nitrogen cycle; functional genes
-
Effects of Nutrient Solution Application Rates on Yield, Quality, and Water-Fertilizer Use Efficiency on Greenhouse Tomatoes Using Grown-in Coir
作者:Liu, Shengxing;Liu, Shengxing;Qiang, Xiaoman;Liu, Hao;Han, Qisheng;Yi, Ping;Ning, Huifeng;Li, Huanhuan;Wang, Chunting;Zhang, Xianbo
关键词:substrate-cultivated tomato; fertigation; yield; fruit quality; water and fertilizer use efficiency
-
Foliar Application of Selenium Enhances Drought Tolerance in Tomatoes by Modulating the Antioxidative System and Restoring Photosynthesis
作者:Zhong, Yuan;Zhong, Yuan;Cui, Haixue;Li, Huanhuan;Qiang, Xiaoman;Han, Qisheng;Liu, Hao;Cui, Haixue
关键词:tomato; drought stress; exogenous selenium; peroxide; photosynthesis
-
Optimizing canopy structure through equal row spacing and appropriate irrigation enhances machine-harvested seed cotton yield and quality
作者:Gao, Fukui;Wang, Lu;Xie, Yucai;Sun, Jingsheng;Ning, Huifeng;Han, Qisheng;Kanneh, James E.;Liu, Hao;Kanneh, James E.;Gao, Fukui;Sun, Jingsheng;Ning, Huifeng;Han, Qisheng;Liu, Hao;Wang, Lu;Xie, Yucai
关键词:Planting pattern; Irrigation quota; Canopy structure; Bud and boll distribution; Impurity content