[1]蒋金豹, 陈云浩, 黄文江. 用高光谱微分指数估测条锈病胁迫下小麦冠层叶绿素密度. 光谱学与光谱分析, 2010, 30(8) : 2243-2247.
Jiang J B, Chen Y H, Huang W J. Using hyperspectral remote sensing to estimate canopy chlorophyll density of wheat under yellow rust stress. Spectroscopy and Spectral Analysis, 2010, 30(8): 2243-2247. (in Chinese)
[2]王克如, 潘文超, 李少昆, 陈兵, 肖华, 王方永, 陈江鲁. 不同施氮量棉花冠层高光谱特征研究. 光谱学与光谱分析, 2011, 31(7): 1868-1872.
Wang K R, Pan W C, Li S K, Chen B, Xiao H, Wang F Y, Chen J L. Monitoring models of the plant nitrogen content based on cotton canopy hyperspectral reflectance. Spectroscopy and Spectral Analysis, 2011, 31(7): 1868-1872. (in Chinese)
[3]Pinar A. Technical Note Grass chlorophyll and the reflectance red edge. International Journal of Remote Sensing, 1996, 17(2): 351.
[4]Hansen P M, Schjoerring J K. Reflectance measurement of canopy biomass and nitrogen status in wheat crops using normalized difference vegetation indices and partial least squares regression. Remote Sensing of Environment, 2003, 86(4): 542.
[5]Blackburn G A. Hyperspectral remote sensing of plant pigments. Journal of Experimental Botany, 2006, 58(4): 855-867.
[6]Blackburn G A, Ferwerda J G. Retrieval of chlorophyll concentration from leaf reflectance spectra using wavelet analysis. Remote Sensing of Environment, 2008, 112: 1614-1632.
[7]Feng W, Yao X, Tian Y C, Cao W X, Zhu Y. Monitoring leaf pigment status with hyperspectral remote sensing in wheat. Australian Journal of Agricultural Research, 2008, 59(8): 748-760.
[8]金震宇, 田庆久, 惠凤鸣, 陆建飞. 水稻叶绿素浓度与光谱反射率关系研究. 遥感技术与应用, 2003, 18(3) : 134-136.
Jin Z Y, Tian Q J, Hui F M, Lu J F. Study of the relationship between rice chlorophyll concentration and rice reflectance. Remote Sensing Technology and Application, 2003, 18(3): 134-136. (in Chinese)
[9]宋开山, 张柏, 王宗明, 李方, 刘焕军. 小波分析在大豆叶绿素含量高光谱反演中的应用. 中国农学通报, 2006, 22(9) : 101-108.
Song K S, Zhang B, Wang Z M, Li F, Liu H J. Application of wavelet transformation in In-situ measured hyperspectral data for soybean LAI estimation. Chinese Agricultural Science Bulletin, 2006, 22(9): 101-108. (in Chinese)
[10]杨杰, 田永超, 姚霞, 曹卫星, 张玉森, 朱艳. 水稻上部叶片叶绿素含量的高光谱估测模型. 生态学报, 2009, 29(12): 6561-6571.
Yang J, Tian Y C, Yao X, Cao W X, Zhang Y S, Zhu Y. Hyperspectral estimation model for chlorophyll concentrations in top leaves of rice. Acta Ecology Sinica, 2009, 29(12): 6561-6571. (in Chinese)
[11]王登伟, 黄春燕, 张伟, 马勤建, 赵鹏举. 高光谱数据与棉花叶绿素含量和叶绿素密度的相关分析. 棉花学报, 2008, 20(5): 368-371.
Wang D W, Huang C Y, Zhang W, Ma Q J, Zhao P J. Relationships analysis between cotton chlorophyll content, chlorophyll density and hyperspectral data. Cotton Science, 2008, 20(5): 368-371. (in Chinese)
[12]李敏夏, 张林森, 李丙智, 张海燕, 郭雯. 苹果叶片高光谱特性与叶绿素含量和SPAD值的关系. 西北林学院院报, 2010, 25(2): 35-39.
Li M X, Zhang L S, Li B Z, Zhang H Y, Guo W. Relationship between spectral reflectance feature and their chlorophyll concentrations and SPAD value of apple leaves. Journal of Northwest Forestry University, 2010, 25 (2): 35-39. (in Chinese)
[13]Li B Z, Li M X. Hyperspectral estimation models for nitrogen contents of apple leaves. Journal of Remote Sensing, 2010, 14(4): 761-773.
[14]雷彤, 赵庚星, 朱西存, 董超, 孟岩, 战冰. 基于高光谱的苹果果期冠层光谱特征及其果量估测. 生态学报, 2010, 30(9): 2276-2285.
Lei T, Zhao G X, Zhu X C, Dong C, Meng Y, Zhan B. Canopy spectral features and fruit amount estimation of apple tree at fruit stage based on hyperspectral data. Acta Ecology Sinica, 2010, 30(9): 2276-2285. (in Chinese)
[15]朱西存, 赵庚星, 王瑞燕, 董芳, 王凌, 雷彤. 苹果叶片的高光谱特征及其色素含量监测. 中国农业科学, 2010, 43(6):1189-1197.
Zhu X C, Zhao G X, Wang R Y, Dong F, Wang L, Lei T. Hyperspectral characteristics of apple leaves and their pigment contents monitoring. Scientia Agricultural Sinica, 2010, 43(6): 1189-1197. (in Chinese)
[16]梁爽, 赵庚星, 朱西存. 苹果树叶片叶绿素含量高光谱估测模型研究. 光谱学与光谱分析, 2012, 32(5): 1367-1370 .
Liang S, Zhao G X, Zhu X C. Hyperspectral estimation models of chlorophyll content in apple leaves. Spectroscopy and Spectral Analysis, 2012, 32(5): 1367-1370. (in Chinese)
[17]赵世杰, 史国安, 董新纯. 植物生理学实验指导. 北京: 中国农业科学技术出版社, 2002.
Zhao S J, Shi G A, Dong X C. The Guidance of Plant Physiology Experiments. Beijing: China Agricultural Science and Technology Press, 2002. (in Chinese)
[18]Smith K L, Steven M D, Colls J J. Use of hyperspectral derivative ratios in the red-edge region to identify plant stress responses to gas leaks. Remote Sensing of Environment, 2004, 92: 207.
[19]谭昌伟, 郭文善, 朱新开, 李春燕, 王纪华. 不同条件下夏玉米冠层反射光谱响应特征的研究. 农业工程学报, 2008, 24(9): 131-135.
Tan C W, Guo W S, Zhu X K, Li C Y, Wang J H. Canopy spectral reflectance characteristics of summer maize under different conditions. Transactions of the CSAE, 2008, 24(9): 131-135. (in Chinese)
[20]Daughtry C S T, Walthall C L, Kim M S, de Colstount E B, McMurtrey Ⅲ J E. Estimating corn leaf chlorophyll concentration from leaf and canopy reflectance. Remote Sensing of Environment, 2000, 74: 229-239.
[21]曹学仁, 周益林, 段霞瑜, 程登发. 白粉菌侵染后田间小麦叶绿素含量与冠层光谱反射率的关系. 植物病理学报, 2009, 39(3): 290-296.
Cao X R, Zhou Y L, Duan X Y, Cheng D F. Relationships between canopy reflectance and chlorophyll contents of wheat infected with powdery mildew in fields. Acta Phytopathologica Sinica, 2009, 39(3): 290-296. (in Chinese)
[22]蒋金豹, 陈云浩, 黄文江. 病害胁迫下冬小麦冠层叶片色素含量高光谱遥感估测研究. 光谱学与光谱分析, 2007, 27(7): 1363-1367.
Jiang J B, Chen Y H, Huang W J. Study on hyperspectral estimation of pigment contents in canopy leaves of winter wheat under disease stress. Spectroscopy and Spectral Analysis, 2007, 27(7): 1363-1367. (in Chinese)
[23]孙焱鑫, 王纪华, 李保国, 刘良云, 黄文江, 赵春江. 基于BP和GRNN 神经网络的冬小麦冠层叶绿素高光谱反演建模研究. 遥感技术与应用, 2007, 22(4): 492-496.
Sun Y X,Wang J H, Li B G, Liu L Y, Huang W J, Zhao C J. Contrastive analysis based on neural network of winter wheat's chlorophyll concentration inversion with hyperspectral data. Remote Sensing and Application, 2007, 22(4): 492-496. (in Chinese)
[24]黄春燕, 王登伟, 闫浩, 张煜星, 曹连莆, 程诚. 棉花叶绿素密度和叶片氮积累量的高光谱检测研究. 作物学报, 2007, 33(6): 931-936.
Huang C Y, Wang D W, Yan H, Zhang Y X, Cao L P, Cheng C. Monitoring of cotton canopy chlorophyll density and leaf nitrogen accumulation status by using hyperspectral data. Acta Agronomica Sinica, 2007, 33(6): 931-936. (in Chinese)
[25]周冬琴, 朱艳, 杨杰, 田永超, 姚霞, 曹卫星. 基于冠层高光谱参数的水稻叶片碳氮比监测. 农业工程学报, 2009, 25(3): 135-141.
Zhou D Q, Zhu Y, Yang J, Tian Y C, Yao X, Cao W X. C/N content ratio of rice leaf monitoring based on canopy hyperspectral parameters. Transactions of the CSAE, 2009, 25(3): 135-141. (in Chinese)
[26]汤旭光, 宋开山, 刘殿伟, 王宗明, 张柏, 杜嘉, 曾丽红, 姜广甲, 王远东. 基于可见/近红外反射光谱的大豆叶绿素含量估算方法比较. 光谱学与光谱分析, 2011, 31(2): 371-374.
Tang X G, Song K S, Liu D W, Wang Z M, Zhang B, Du J, Zeng L H, Jiang G J, Wang Y D. Comparison of methods for estimating soybean chlorophyll content based on visual/near infrared reflection spectra. Spectroscopy and Spectral Analysis, 2011, 31(2): 371-374. (in Chinese)
[27]王渊, 黄敬峰, 王福民, 刘占宇. 油菜叶片和冠层水平氮素含量的高光谱反射率估算模型. 光谱学与光谱分析, 2008, 28(2): 273-277.
Wang Y, Huang J F, Wang F M, Liu Z Y. Predicting nitrogen concentrations from hyperspectral reflectance at leaf and canopy for rape. Spectroscopy and Spectral Analysis, 2008, 28(2): 273-277. (in Chinese) |