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Novel Classification Technique for Hyperspectral Imaging using Multinomial Logistic Regression and Morphological Profiles with Composite Kernels

机译:具有复合核的多项式物流回归和形态谱的高光谱成像的新型分类技术

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Hyperspectral imaging (HI) is getting much more attention among researchers in different fields like agriculture, defense, medical, and geographical surveys. In this work, we have proposed a novel automated system for the classification and segmentation of landscapes using hyperspectral images. The proposed semi-supervised based approach has improved the extraction of spatial characteristics of the scene that has employed an extended multi-attribute profile (EMAP) by stacking of several attributes. The unlabeled data points located near the classifier boundaries are selected on the basis of entropy related to the corresponding class labels. In the next segmentation phase, MLR probabilities are computed against the output of classifier. Finally, maximum-a-posteriori segmentation is carried out on the multilevel logistic prior labels. The simulated results have obtained classification accuracy of 95.50% by comparing predicted labels with original ones. The segmentation accuracy, after developing regions on the output of classification, is 98.31%. A performance comparison of the proposed approach with several approaches has also been carried out.
机译:高光谱成像(HI)在农业,防御,医疗和地理调查等不同领域的研究人员中受到更高的关注。在这项工作中,我们提出了一种新的自动化系统,用于使用高光谱图像进行景观的分类和分割。所提出的半监督基于的方法改善了通过堆叠几个属性而采用扩展多属性配置文件(EMAP)的场景的空间特征的提取。基于与相应类标签相关的熵选择位于分类器边界附近的未标记数据点。在下一个分割阶段,将根据分类器的输出计算MLR概率。最后,在多级逻辑现有标签上进行最大-A-Bouthiori分割。通过将预测的标签与原始标签进行比较,模拟结果获得了95.50 %的分类准确度。在分类产出的发展区域后,分割准确性为98.31 %。还进行了拟议方法的性能比较,具有多种方法的拟议方法。

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