Honey Classification using Hyperspectral Imaging and Machine Learning

Fuente: arXiv
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Hauptverfasser: Al-Awadhi, Mokhtar A., Deshmukh, Ratnadeep R.
Format: Preprint
Veröffentlicht: 2025
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author Al-Awadhi, Mokhtar A.
Deshmukh, Ratnadeep R.
author_facet Al-Awadhi, Mokhtar A.
Deshmukh, Ratnadeep R.
contents In this paper, we propose a machine learning-based method for automatically classifying honey botanical origins. Dataset preparation, feature extraction, and classification are the three main steps of the proposed method. We use a class transformation method in the dataset preparation phase to maximize the separability across classes. The feature extraction phase employs the Linear Discriminant Analysis (LDA) technique for extracting relevant features and reducing the number of dimensions. In the classification phase, we use Support Vector Machines (SVM) and K-Nearest Neighbors (KNN) models to classify the extracted features of honey samples into their botanical origins. We evaluate our system using a standard honey hyperspectral imaging (HSI) dataset. Experimental findings demonstrate that the proposed system produces state-of-the-art results on this dataset, achieving the highest classification accuracy of 95.13% for hyperspectral image-based classification and 92.80% for hyperspectral instance-based classification.
format Preprint
id arxiv_https___arxiv_org_abs_2508_00361
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Honey Classification using Hyperspectral Imaging and Machine Learning
Al-Awadhi, Mokhtar A.
Deshmukh, Ratnadeep R.
Computer Vision and Pattern Recognition
In this paper, we propose a machine learning-based method for automatically classifying honey botanical origins. Dataset preparation, feature extraction, and classification are the three main steps of the proposed method. We use a class transformation method in the dataset preparation phase to maximize the separability across classes. The feature extraction phase employs the Linear Discriminant Analysis (LDA) technique for extracting relevant features and reducing the number of dimensions. In the classification phase, we use Support Vector Machines (SVM) and K-Nearest Neighbors (KNN) models to classify the extracted features of honey samples into their botanical origins. We evaluate our system using a standard honey hyperspectral imaging (HSI) dataset. Experimental findings demonstrate that the proposed system produces state-of-the-art results on this dataset, achieving the highest classification accuracy of 95.13% for hyperspectral image-based classification and 92.80% for hyperspectral instance-based classification.
title Honey Classification using Hyperspectral Imaging and Machine Learning
topic Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2508.00361