Predicting and Visualizing Citrus Color Transformation Using a Deep Mask-Guided Generative Network

Author:

Bao Zehan1,Li Weifu12,Chen Jun12,Chen Hong12,John Vijay3,Xiao Chi4,Chen Yaohui5

Affiliation:

1. College of Informatics, Huazhong Agricultural University, Wuhan 430070, China.

2. Engineering Research Center of Intelligent Technology for Agriculture, Ministry of Education, Wuhan, China.

3. RIKEN, Guardian robot project, 2-2-2 Hikaridai Seika-cho, Sorakugun, 619-0288 Kyoto, Japan.

4. Key Laboratory of Biomedical Engineering of Hainan Province, School of Biomedical Engineering, Hainan University, Haikou 570100, China.

5. College of Engineering, Huazhong Agricultural University, 430070 Wuhan, China.

Abstract

Citrus rind color is a good indicator of fruit development, and methods to monitor and predict color transformation therefore help the decisions of crop management practices and harvest schedules. This work presents the complete workflow to predict and visualize citrus color transformation in the orchard featuring high accuracy and fidelity. A total of 107 sample Navel oranges were observed during the color transformation period, resulting in a dataset containing 7,535 citrus images. A framework is proposed that integrates visual saliency into deep learning, and it consists of a segmentation network, a deep mask-guided generative network, and a loss network with manually designed loss functions. Moreover, the fusion of image features and temporal information enables one single model to predict the rind color at different time intervals, thus effectively shrinking the number of model parameters. The semantic segmentation network of the framework achieves the mean intersection over a union score of 0.9694, and the generative network obtains a peak signal-to-noise ratio of 30.01 and a mean local style loss score of 2.710, which indicate both high quality and similarity of the generated images and are also consistent with human perception. To ease the applications in the real world, the model is ported to an Android-based application for mobile devices. The methods can be readily expanded to other fruit crops with a color transformation period. The dataset and the source code are publicly available at GitHub.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Agronomy and Crop Science

Reference43 articles.

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2. United States Department of Agriculture. Citrus: World markets and trade. 2022. https://apps.fas.usda.gov/psdonline/circulars/citrus.pdf.

3. Emerging approaches to determine maturity of citrus fruit;Gupta AK;Crit Rev Food Sci Nutr,2022

4. A novel carotenoid cleavage activity involved in the biosynthesis of Citrus fruit-specific apocarotenoid pigments

5. Recent advances in the regulation of citric acid metabolism in citrus fruit;Hussain SB;Crit Rev Plant Sci,2017

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