Knowledge Resource Center for Ecological Environment in Arid Area
基于Sentinel-2A影像干旱区棉花叶片SPAD数字制图 | |
其他题名 | SPAD digital mapping of cotton leaves in arid area based on Sentinel-2A image |
唐普恩; 丁建丽![]() | |
来源期刊 | 生态学报
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ISSN | 1000-0933 |
出版年 | 2020 |
卷号 | 40期号:22页码:8326-8335 |
中文摘要 | 植被叶片叶绿素是农业遥感反演的重要参数,叶绿素含量的变化与植被生长环境的胁迫程度、生理变化密切相关,故将植被叶绿素进行实时、动态监测对农业生产极 为重要。然而,传统经验模型及叶绿素精准测量存在困难。基于高分辨率的Sentinel-2A数据,在机器学习框架下,利用光谱信息、最适光谱指数和基于 PROSAIL辐射传输模型的生物协变量构建3种建模方案(方案1:光谱信息和最适光谱指数联合,方案2:光谱信息和物理模型生物协变量联合,方案3:光 谱信息、最适光谱指数和物理模型生物协变量联合)。最终基于优选出的建模方案进行棉花叶片叶绿素相对含量的空间数字制图。结果表明:(1)红边波段参与的 最适光谱指数比值植被指数(RVI)与棉花叶片SPAD值相关性最高r = 0.767,P** = 0.195;(2)将构建的17个变量进行重要性分析可知,构建的最适光谱指数比值植被指数(RVI)与物理模型生物协变量LAI-Cab对估算模型的精 度贡献率较大;(3)建模方案构建植被指数时红边波段被确定为最优波段,在增加精度方面起到决定性作用;通过模型评价标准来分析3种方案可知,预测精度大 小顺序为模型方案3>模型方案1>模型方案2,其中方案3的决定系数R2最高为0.826,即估算模型方案3对棉花叶片SPAD值具有最好的预测能力,可 以为干旱区农作物的生理参数反演提供新的思路,为农业安全监测,合理水肥配置提供科学数据支持。 |
英文摘要 | Vegetation leaf chlorophyll is an important parameter for agricultural remote sensing inversion.The change of Chlorophyll content is intensely associated with the stress degree and physiological changes of vegetation growth environment.Therefore,it is vital for agricultural safety production to conduct real-time and dynamic detect in vegetation chlorophyll.Nevertheless,it is difficult to accurately measure space chlorophyll based on traditionally empirical models.In this study,using high-resolution Sentinel-2A data,three modeling patterns were driven by spectral information,optimal spectral index and biological covariates based on PROSAIL radiation transmission model within the framework of machine learning(random forest) (Scheme 1:the consolidation of spectral information and optimally spectral index combination,Scheme 2:the combination of spectral information and physical model biological covariate,Scheme 3:the merger among spectral information,optimally spectral index and physical model biological covariate).The chlorophyll content of cotton leaves was mapped based on the optimized modeling scheme.The results show that:(1) the correlation between the optimally spectral index Ratio Vegetation Index (RVI) with red edge band and the SPAD value of cotton leaves is the highest r = 0.767,P** = 0.195.(2) The importance analysis of the 17 constructed variables shows that the construction between the optimally spectral index Ratio Vegetation Index (RVI) and the physical model biological covariate LAI-Cab imposes a great contribution on the precise of the estimated model.(3) The red-edge band is determined as the optimal band when the vegetation index is constructed by the modeling scheme,which presented main role in constructing vegetation index.Analyzing the three schemes through model evaluation criteria,the order of prediction accuracy was model scheme 3> model scheme 1> model scheme 2.The decision coefficient R2 of scheme 3 was the highest at 0.826,which showed model scheme 3 has greater capability in predicting the SPAD value of the cotton leaves.It can provide advanced theory for the inversion of physiological parameters of crops in arid areas.Moreover,it also supplied scientific data support in detecting agricultural safety and allocating reasonable water and fertilizer. |
中文关键词 | 植被指数 ; 叶绿素 ; PROSAIL模型 ; 随机森林 |
英文关键词 | Sentinel-2A Sentinel-2A vegetation index chlorophyll PROSAIL model random forest |
类型 | Article |
语种 | 中文 |
收录类别 | CSCD |
WOS类目 | Agriculture |
CSCD记录号 | CSCD:6862669 |
资源类型 | 期刊论文 |
条目标识符 | http://119.78.100.177/qdio/handle/2XILL650/353782 |
作者单位 | 唐普恩, 新疆大学资源与环境科学学院;;新疆大学, ;;绿洲生态教育部重点实验室, 乌鲁木齐;;乌鲁木齐, ;; 830046;;830046. 葛翔宇, 新疆大学资源与环境科学学院;;新疆大学, ;;绿洲生态教育部重点实验室, 乌鲁木齐;;乌鲁木齐, ;; 830046;;830046. 张振华, 新疆大学资源与环境科学学院;;新疆大学, ;;绿洲生态教育部重点实验室, 乌鲁木齐;;乌鲁木齐, ;; 830046;;830046. 丁建丽, 新疆大学资源与环境科学学院;;新疆大学;;新疆大学, ;;绿洲生态教育部重点实验室;;智慧城市与环境建模自治区普通高校重点实验室, 乌鲁木齐;;乌鲁木齐;;乌鲁木齐, ;;;; 830046;;830046;;830046. |
推荐引用方式 GB/T 7714 | 唐普恩,丁建丽,葛翔宇,等. 基于Sentinel-2A影像干旱区棉花叶片SPAD数字制图[J],2020,40(22):8326-8335. |
APA | 唐普恩,丁建丽,葛翔宇,&张振华.(2020).基于Sentinel-2A影像干旱区棉花叶片SPAD数字制图.生态学报,40(22),8326-8335. |
MLA | 唐普恩,et al."基于Sentinel-2A影像干旱区棉花叶片SPAD数字制图".生态学报 40.22(2020):8326-8335. |
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