首页> 外国专利> WATER STRESS DETECTION METHOD FOR TOMATOES IN SEEDLING STAGE BASED ON MICRO-CT AND POLARIZATION-HYPERSPECTRAL IMAGING MULTI-FEATURE FUSION

WATER STRESS DETECTION METHOD FOR TOMATOES IN SEEDLING STAGE BASED ON MICRO-CT AND POLARIZATION-HYPERSPECTRAL IMAGING MULTI-FEATURE FUSION

机译:基于微CT和极化-高光谱成像多特征融合的苗期番茄水分胁迫检测方法

摘要

A water stress detection method for tomatoes in a seedling stage based on micro-CT and polarization-hyperspectral imaging multi-feature fusion, comprising: using micro-CT to scan microscopic morphological features such as water stress stomata, spongy body, palisade tissue, cilia, vascular bundle, root volume, main root, and root hair density of tomatoes; using a polarization-hyperspectral imaging system to obtain macroscopic morphological features such as crown width, plant height, and leaf inclination of water stress plants, as well as leaf vein distribution, average gray, and leaf margin shaded area under a water-sensitive wavelength of 1450 nm, and macroscopic morphological features such as polarization states, stock vectors, and Mueller matrix variables of 1450 nm feature images at 0°, 45°, 90°, 135°, and 180° feature polarization angles. By fusion of internal and external structures, above-ground, underground, and macroscopic and microscopic morphological features of water stress tomatoes, and mutual fusion of water stress feature wavelength images and polarization state features, advantages are complementary, comprehensive and precise extraction and precise quantitative analysis of water stress features of the tomatoes are implemented, and a basis for scientific management of water and fertilizer integration of facilities is provided.
机译:基于微CT和偏振-高光谱成像多特征融合的番茄苗期水分胁迫检测方法,包括:利用显微CT扫描水分胁迫气孔,海绵体,栅栏组织,纤毛等微观形态特征番茄的维管束,根体积,主根和根毛密度;使用偏振高光谱成像系统获得宏观形态特征,例如水分胁迫植物在干旱胁迫下的冠宽,株高和叶片倾斜度,以及叶脉分布,平均灰度和叶缘阴影区域1450 nm以及1450 nm的宏观形态学特征(如偏振态,原始向量和Mueller矩阵变量)在0°,45°,90°,135°和180°处具有特征图像偏振角。通过融合水分胁迫番茄的内部和外部结构,地上,地下以及宏观和微观形态特征,以及水分胁迫特征波长图像和偏振态特征的相互融合,优势互补,全面,精确地提取和精确定量对番茄的水分胁迫特征进行了分析,为设施的水肥一体化科学管理提供了依据。

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