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首页> 外文期刊>Food and bioprocess technology >Recent advances and applications of hyperspectral imaging for fruit and vegetable quality assessment.
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Recent advances and applications of hyperspectral imaging for fruit and vegetable quality assessment.

机译:高光谱成像技术在水果和蔬菜质量评估中的最新进展和应用。

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摘要

Hyperspectral imaging systems are starting to be used as a scientific tool for food quality assessment. A typical hyperspectral image is composed of a set of a relatively wide range of monochromatic images corresponding to continuous wavelengths that normally contain redundant information or may exhibit a high degree of correlation. In addition, computation of the classifiers used to deal with the data obtained from the images can become excessively complex and time-consuming for such high-dimensional datasets, and this makes it difficult to incorporate such systems into an industry that demands standard protocols or high-speed processes. Therefore, recent works have focused on the development of new systems based on this technology that are capable of analysing quality features that cannot be inspected using visible imaging. Many of those studies have also centred on finding new statistical techniques to reduce the hyperspectral images to multispectral ones, which are easier to implement in automatic, non-destructive systems. This article reviews recent works that use hyperspectral imaging for the inspection of fruit and vegetables. It explains the different technologies available to acquire the images and their use for the non-destructive inspection of the internal and external features of these products. Particular attention is paid to the works aimed at reducing the dimensionality of the images, with details of the statistical techniques most commonly used for this task
机译:高光谱成像系统已开始被用作食品质量评估的科学工具。典型的高光谱图像由一组相对较宽范围的单色图像组成,这些单色图像对应于通常包含冗余信息或表现出高度相关性的连续波长。另外,对于这样的高维数据集,用于处理从图像获得的数据的分类器的计算可能变得过于复杂和耗时,并且这使得难以将此类系统并入需要标准协议或高标准协议的行业。速度的过程。因此,最近的工作集中在基于该技术的新系统的开发上,该系统能够分析使用可见成像无法检查的质量特征。这些研究中的许多研究也集中在寻找新的统计技术上,以将高光谱图像减少为多光谱图像,这在自动,非破坏性系统中更容易实现。本文回顾了使用高光谱成像技术检查水果和蔬菜的最新工作。它解释了可用于获取图像的不同技术,以及它们用于这些产品的内部和外部功能的非破坏性检查。特别关注旨在减少图像尺寸的作品,并详细介绍了最常用于此任务的统计技术

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