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An Intelligent System-Based Coffee Plant Leaf Disease Recognition Using Deep Learning Techniques on Rwandan Arabica Dataset

Technologies · 1 Sept 2023 · 10.3390/technologies11050116

Abstract

Rwandan coffee holds significant importance and immense value within the realm of agriculture, serving as a vital and valuable commodity. Additionally, coffee plays a pivotal role in generating foreign exchange for numerous developing nations. However, the coffee plant is vulnerable to pests and diseases weakening production. Farmers in cooperation with experts use manual methods to detect diseases resulting in human errors. With the rapid improvements in deep learning methods, it is possible to detect and recognize plan diseases to support crop yield improvement. Therefore, it is an essential task to develop an efficient method for intelligently detecting, identifying, and predicting coffee leaf diseases. This study aims to build the Rwandan coffee plant dataset, with the occurrence of coffee rust, miner, and red spider mites identified to be the most popular due to their geographical situations. From the collected coffee leaves dataset of 37,939 images, the preprocessing, along with modeling used five deep learning models such as InceptionV3, ResNet50, Xception, VGG16, and DenseNet. The training, validation, and testing ratio is 80%, 10%, and 10%, respectively, with a maximum of 10 epochs. The comparative analysis of the models’ performances was investigated to select the best for future portable use. The experiment proved the DenseNet model to be the best with an accuracy of 99.57%. The efficiency of the suggested method is validated through an unbiased evaluation when compared to existing approaches with different metrics.

Plant phenotyping relevance

コーヒー葉の病害状態を画像から認識・分類する深層学習手法とデータセットを中心に開発・比較・検証しており、植物病害フェノタイプの取得が中心である。

abstractThis study aims to build the Rwandan coffee plant dataset
abstractTherefore, it is an essential task to develop an efficient method for intelligently detecting, identifying, and predicting coffee leaf diseases.
abstractThe comparative analysis of the models’ performances was investigated to select the best for future portable use.
abstractThe efficiency of the suggested method is validated through an unbiased evaluation when compared to existing approaches with different metrics.

Code and data availability

The paper's Rwandan Arabica coffee leaf dataset (37,939 images) and trained models are not publicly deposited; the Data Availability Statement says data are available only upon request from the authors. No public code or model URLs are provided.

No evidence-backed public reproduction asset is currently recorded.

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