刘庆生, 刘高焕, 储晓雷. 水稻、大豆与芦苇农田冠层光谱特征研究——以辽河三角洲为例[J]. 中国生态农业学报(中英文), 2006, 14(2): 66-69.
引用本文: 刘庆生, 刘高焕, 储晓雷. 水稻、大豆与芦苇农田冠层光谱特征研究——以辽河三角洲为例[J]. 中国生态农业学报(中英文), 2006, 14(2): 66-69.
LIU Qing-Sheng, LIU Gao-Huan, CHU Xiao-Lei. Comparison of the spectral characteristics of rice,soybean and reed—A case study from Liaohe River Delta[J]. Chinese Journal of Eco-Agriculture, 2006, 14(2): 66-69.
Citation: LIU Qing-Sheng, LIU Gao-Huan, CHU Xiao-Lei. Comparison of the spectral characteristics of rice,soybean and reed—A case study from Liaohe River Delta[J]. Chinese Journal of Eco-Agriculture, 2006, 14(2): 66-69.

水稻、大豆与芦苇农田冠层光谱特征研究——以辽河三角洲为例

Comparison of the spectral characteristics of rice,soybean and reed—A case study from Liaohe River Delta

  • 摘要: 对辽河三角洲遥感实测的42个水稻、15个芦苇和15个大豆野外冠层光谱数据分析结果表明,平均光谱水稻<芦苇<大豆;一阶微分平均光谱水稻、芦苇和大豆形态相近,528nm处水稻<芦苇<大豆,700~760nm间水稻<芦苇<大豆,水稻存在705nm处波峰、715nm波谷和728nm波峰,而芦苇仅有725nm处波峰,大豆仅有705nm处波峰;二阶微分平均光谱360~963nm间水稻、芦苇和大豆形态相近,且差异主要表现在1086~1150nm处,1086~1113nm间水稻和芦苇为单峰,大豆为双峰,1113~1150nm间水稻、大豆为单峰,芦苇为双峰。并探讨了水稻、芦苇和大豆一阶微分光谱与二阶微分光谱中明显的波峰和波谷对区分三者的实际作用。

     

    Abstract: Through the analyses on 42 rice field canopy spectral samples,15 soybean field canopy spectral samples and 15 reed field canopy spectral samples, some conclusions were made. The average spectrum of rice is less than that of reed, which is less than that of soybean. The shape of average spectrum of the first derivative of rice is similar to that of reed and soybean. The average spectrum of the first derivatives of rice is less than that of reed, which is less than that of soybean at 528nm, and in wavelengths between 700 and 760nm, rice has two peaks at 705nm and 728nm and one valley at 715nm, and reed only has one peak at 725nm, and soybean only has one peak at 705nm. In wavelengths between 360 and 963nm, the shape of average spectrum of the second derivatives of rice is similar to that of reed and soybean. In wavelengths between 1086 and 1150nm, the shapes of average spectrum of the second derivatives of rice, reed and soybean are different. In wavelengths between 1086 and 1113nm, the rice and reed only have a single peak, and the soybean has double peaks. In wavelengths between 1113 and 1150nm, the rice and soybean only have a single peak, and the reed has double peaks. Then, the function of the significant peaks and valleys of the first and the second derivative spectra of rice and reed and soybean on the distinction of three plants is stated.

     

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