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Data Fusion of Two Hyperspectral Imaging Systems with Complementary Spectral Sensing Ranges for Blueberry Bruising Detection

机译:两个具有互补光谱传感范围的高光谱成像系统的数据融合用于蓝莓瘀青检测

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摘要

Currently, the detection of blueberry internal bruising focuses mostly on single hyperspectral imaging (HSI) systems. Attempts to fuse different HSI systems with complementary spectral ranges are still lacking. A push broom based HSI system and a liquid crystal tunable filter (LCTF) based HSI system with different sensing ranges and detectors were investigated to jointly detect blueberry internal bruising in the lab. The mean reflectance spectrum of each berry sample was extracted from the data obtained by two HSI systems respectively. The spectral data from the two spectroscopic techniques were analyzed separately using feature selection method, partial least squares-discriminant analysis (PLS-DA), and support vector machine (SVM), and then fused with three data fusion strategies at the data level, feature level, and decision level. The three data fusion strategies achieved better classification results than using each HSI system alone. The decision level fusion integrating classification results from the two instruments with selected relevant features achieved more promising results, suggesting that the two HSI systems with complementary spectral ranges, combined with feature selection and data fusion strategies, could be used synergistically to improve blueberry internal bruising detection. This study was the first step in demonstrating the feasibility of the fusion of two HSI systems with complementary spectral ranges for detecting blueberry bruising, which could lead to a multispectral imaging system with a few selected wavelengths and an appropriate detector for bruising detection on the packing line.
机译:当前,蓝莓内部青紫的检测主要集中在单一高光谱成像(HSI)系统上。仍然缺乏将不同的HSI系统与互补光谱范围融合的尝试。在实验室中,研究了基于推扫式HSI系统和基于液晶可调滤波器(LCTF)的具有不同感应范围和检测器的HSI系统,以共同检测蓝莓内部的青紫。每个浆果样品的平均反射光谱分别从两个HSI系统获得的数据中提取。使用特征选择方法,偏最小二乘鉴别分析(PLS-DA)和支持向量机(SVM)分别分析了两种光谱技术的光谱数据,然后在数据级别,特征上与三种数据融合策略融合级别和决策级别。与单独使用每个HSI系统相比,这三种数据融合策略获得了更好的分类结果。决策级融合融合了两种具有选定相关特征的仪器的分类结果,取得了更有希望的结果,这表明具有互补光谱范围的两个HSI系统,结合特征选择和数据融合策略,可以协同使用来改善蓝莓内部青紫的检测。这项研究是证明将具有互补光谱范围的两个HSI系统融合以检测蓝莓青紫的可行性的第一步,这可能会导致具有几个选定波长的多光谱成像系统以及在包装线上合适的用于青紫检测的检测器。

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