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Rice yield estimation using a CNN-based image-driven data assimilation framework

delete2022-11-01
delete19
PRE
AI
J
Jingye Han
Q
Qi Yang
Z
Zhuowei Chen
J
Jin Yu
Y
Yuanyuan Zha
DOI:10.1016/j.fcr.2022.108693delete
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Abstract

Abstract

En 中文
The accurate prediction and estimation of grain yield for smallholder farms are crucial for agricultural man-agement. In this study, we propose an image-driven data assimilation framework that enables smallholder farmers to estimate crop yield. In the framework, a convolutional neural network was trained using label dis-tribution learning to estimate the probability distribution of rice crop states from images. The mean and variance of the estimated probability were regarded as observed values and variances, which were then assimilated into the ORYZA2000 crop growth model to estimate the final yield. Compared with the accuracy (R2 = 0.410, RMSE = 1.059 t ha -1) of yield estimation by assimilating field sampling observations, the proposed method signifi-cantly improved accuracy, with R2 = 0.646 and RMSE = 0.679 t ha -1. The results demonstrated the feasibility of driving a crop growth model using easily available camera images. Additionally, the probability distribution estimation method made it possible to quantify the error for each observation. The method provides a new perspective for quantifying the observation error, thereby indicating a potential research direction for data assimilation. After that, we used numerous simulation cases to determine the most valuable observation com-bination for final grain yield estimation, the final yield prediction ability at different development stages, and the model performance affected by number of images. Finally, a series of factors that may affect the applicability of the framework was discussed. This study establishes an intelligent data assimilation framework for smallholder farmers that can absorb crop phenotyping data from digital cameras with a low cost and simple implementation.
Keywords:
Data assimilation
Deep learning
Yield estimation
Rice
CNN
Observation uncertainty

Journal

Field Crops Research cover
Field Crops Research
IF:
6.4
Papers:
6.4K
Citations:
2.8W

Organization

W
wuhan university
Scholars:
8.0W
Papers: 5.8W
Citations: 70