Unverified paper record
Improving the accuracy of cotton seedling emergence rate estimation by fusing UAV-based multispectral vegetation indices.
Frontiers in plant science · 27 Mar 2024 · 10.3389/fpls.2024.1333089
Abstract
Timely and accurate estimation of cotton seedling emergence rate is of great significance to cotton production. This study explored the feasibility of drone-based remote sensing in monitoring cotton seedling emergence. The visible and multispectral images of cotton seedlings with 2 - 4 leaves in 30 plots were synchronously obtained by drones. The acquired images included cotton seedlings, bare soil, mulching films, and PE drip tapes. After constructing 17 visible VIs and 14 multispectral VIs, three strategies were used to separate cotton seedlings from the images: (1) Otsu's thresholding was performed on each vegetation index (VI); (2) Key VIs were extracted based on results of (1), and the Otsu-intersection method and three machine learning methods were used to classify cotton seedlings, bare soil, mulching films, and PE drip tapes in the images; (3) Machine learning models were constructed using all VIs and validated. Finally, the models constructed based on two modeling strategies [Otsu-intersection (OI) and machine learning (Support Vector Machine (SVM), Random Forest (RF), and K-nearest neighbor (KNN)] showed a higher accuracy. Therefore, these models were selected to estimate cotton seedling emergence rate, and the estimates were compared with the manually measured emergence rate. The results showed that multispectral VIs, especially NDVI, RVI, SAVI, EVI2, OSAVI, and MCARI, had higher crop seedling extraction accuracy than visible VIs. After fusing all VIs or key VIs extracted based on Otsu's thresholding, the binary image purity was greatly improved. Among the fusion methods, the Key VIs-OI and All VIs-KNN methods yielded less noises and small errors, with a RMSE (root mean squared error) as low as 2.69% and a MAE (mean absolute error) as low as 2.15%. Therefore, fusing multiple VIs can increase crop image segmentation accuracy. This study provides a new method for rapidly monitoring crop seedling emergence rate in the field, which is of great significance for the development of modern agriculture.
Plant phenotyping relevance
UAVマルチスペクトル画像、画像分割、機械学習を統合し、綿実生の出芽率という植物形質を推定する方法を開発・検証しており、フェノタイピング手法が中心である。
titleImproving the accuracy of cotton seedling emergence rate estimation by fusing UAV-based multispectral vegetation indices.
abstractAfter constructing 17 visible VIs and 14 multispectral VIs, three strategies were used to separate cotton seedlings from the images
abstractFinally, the models constructed based on two modeling strategies [Otsu-intersection (OI) and machine learning (Support Vector Machine (SVM), Random Forest (RF), and K-nearest neighbor (KNN)] showed a higher accuracy.
abstractThis study provides a new method for rapidly monitoring crop seedling emergence rate in the field
Code and data availability
The supplied blocks describe UAV multispectral image acquisition and MATLAB-based analysis for cotton seedling emergence estimation, but contain no public phenotype dataset, image deposit, author code release, or data availability statement with an authors' URL. The only URL besides the article DOI is the generic MathW
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