DeepEMPR: coffee leaf disease detection with deep learning and enhanced multivariance product representation.

IF 3.5 4区 计算机科学 Q2 COMPUTER SCIENCE, ARTIFICIAL INTELLIGENCE PeerJ Computer Science Pub Date : 2024-11-13 eCollection Date: 2024-01-01 DOI:10.7717/peerj-cs.2406
Ahmet Topal, Burcu Tunga, Erfan Babaee Tirkolaee
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Abstract

Plant diseases threaten agricultural sustainability by reducing crop yields. Rapid and accurate disease identification is crucial for effective management. Recent advancements in artificial intelligence (AI) have facilitated the development of automated systems for disease detection. This study focuses on enhancing the classification of diseases and estimating their severity in coffee leaf images. To do so, we propose a novel approach as the preprocessing step for the classification in which enhanced multivariance product representation (EMPR) is used to decompose the considered image into components, a new image is constructed using some of those components, and the contrast of the new image is enhanced by applying high-dimensional model representation (HDMR) to highlight the diseased parts of the leaves. Popular convolutional neural network (CNN) architectures, including AlexNet, VGG16, and ResNet50, are evaluated. Results show that VGG16 achieves the highest classification accuracy of approximately 96%, while all models perform well in predicting disease severity levels, with accuracies exceeding 85%. Notably, the ResNet50 model achieves accuracy levels surpassing 90%. This research contributes to the advancement of automated crop health management systems.

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DeepEMPR:基于深度学习和增强的多方差产品表示的咖啡叶病检测。
植物病害通过降低作物产量威胁农业的可持续性。快速准确的疾病识别是有效管理的关键。人工智能(AI)的最新进展促进了疾病检测自动化系统的发展。本研究的重点是加强咖啡叶图像的疾病分类和估计其严重程度。为此,我们提出了一种新的方法作为分类的预处理步骤,该方法使用增强多方差积表示(enhanced multivariance product representation, EMPR)将考虑的图像分解为组件,使用其中的一些组件构建新图像,并通过应用高维模型表示(high-dimensional model representation, HDMR)来突出叶片的病变部分,从而增强新图像的对比度。评估了流行的卷积神经网络(CNN)架构,包括AlexNet, VGG16和ResNet50。结果表明,VGG16的分类准确率最高,约为96%,而所有模型在预测疾病严重程度方面都表现良好,准确率超过85%。值得注意的是,ResNet50模型的准确率超过了90%。本研究有助于作物健康管理自动化系统的发展。
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来源期刊
PeerJ Computer Science
PeerJ Computer Science Computer Science-General Computer Science
CiteScore
6.10
自引率
5.30%
发文量
332
审稿时长
10 weeks
期刊介绍: PeerJ Computer Science is the new open access journal covering all subject areas in computer science, with the backing of a prestigious advisory board and more than 300 academic editors.
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