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Convolutional Neural Networks for the Intelligent and Automated Detection of Mango Leaf Disease to Enhance Crop Health Management

Agricultural Science Digest - A Research Journal · 18 Nov 2025 · 10.18805/ag.df-717

Abstract

Background: Mango leaf diseases reduce fruit yield and quality, requiring early detection for effective management. Traditional methods rely on manual inspection, which is slow, subjective and error-prone. Deep learning, especially Convolutional Neural Networks (CNNs), offers automation but faces challenges. These include class imbalance, poor dataset generalization and limited real-world scalability. This study develops a robust CNN model to improve mango leaf disease classification. Methods: A dataset of 2,494 mango leaf images from the Mendeley database was used. Images were categorized into anthracnose, bacterial canker, cutting weevil, dieback and healthy. Preprocessing involved image resizing, normalization and data augmentation to enhance model performance. The dataset was split into 80% training, 10% validation and 10% testing. A six-layer CNN with ReLU activation, max-pooling, dropout (0.5) and fully connected layers was trained for 25 epochs. The model used Adam optimizer and categorical cross-entropy loss. Result: The model achieved 98.03% training accuracy and 97.77% validation accuracy over 25 epochs. It had a low validation loss (0.0485), indicating good generalization. The confusion matrix showed high precision and recall across all classes. The overall classification accuracy was 96.53%, with a macro-average F1-score of 96.57%. Anthracnose and Dieback were perfectly classified. Bacterial canker had a lower precision (0.8500), suggesting minor misclassifications. AUC analysis showed good disease separation, with Cutting Weevil achieving the highest AUC (0.72). This CNN model can automate mango disease detection, reducing reliance on manual inspections. It can be useful for smart farming systems and mobile applications for real-time disease diagnosis. Future work will focus on expanding the dataset, optimizing for mobile use and integrating environmental factors for better disease prediction.

Plant phenotyping relevance

CNNによるマンゴー葉画像からの病害状態分類が研究の中心であり、植物の病徴を直接推定する画像ベースのフェノタイピング手法を開発・評価している。

abstractThis study develops a robust CNN model to improve mango leaf disease classification.
abstractA dataset of 2,494 mango leaf images from the Mendeley database was used.
abstractThe overall classification accuracy was 96.53%, with a macro-average F1-score of 96.57%.

Code and data availability

The paper uses a public Mendeley mango leaf image dataset (2,494 images, five classes) and a TensorFlow Keras CNN, but no authors' public code or dataset URL is provided; data are offered only upon reasonable request, and no allowed URL corresponds to a paper-specific asset.

No evidence-backed public reproduction asset is currently recorded.

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