Unverified paper record
Cover Crop Types Influence Biomass Estimation Using Unmanned Aerial Vehicle-Mounted Multispectral Sensors
Remote Sensing · 20 Apr 2025 · 10.3390/rs17081471
Abstract
Accurate cover crop biomass estimation is critical for evaluating their ecological benefits. Traditional methods, like destructive sampling, are labor-intensive and time-consuming. This study investigates the application of unmanned aerial vehicle (UAV)-mounted multispectral sensors to estimate biomass in oats, Austrian winter peas (AWP), turnips, and a combination of all three crops across six experimental plots. Five spectral images were collected at two growth stages, analyzing band reflectance, nine vegetation indices, and canopy height models (CHMs) for biomass estimation. Results indicated that most vegetation indices were effective during mid-growth stages but showed reduced accuracy later. Stepwise multiple linear regression revealed that combining the normalized difference red-edge (NDRE) index and CHM provided the best biomass model before termination (R2 = 0.84). For bitemporal images, green reflectance, CHM, and the ratio of near-infrared (NIR) to red achieved the best performance (R2 = 0.85). Cover crop species also influenced the model performance. Oats were best modeled using the enhanced vegetation index (EVI) (R2 = 0.86), AWP with red-edge reflectance (R2 = 0.71), turnips with NIR, GNDVI, and CHM (R2 = 0.95), and mixed species with NIR and blue band reflectance (R2 = 0.93). These findings demonstrate the potential of high-resolution multispectral imaging for efficient biomass assessment in precision agriculture.
Plant phenotyping relevance
UAV搭載マルチスペクトル画像と植生指数・キャノピー高モデルを用いて、被覆作物のバイオマスという植物形質を推定し、モデル性能を比較・検証しているため、フェノタイピング手法が中心である。
abstractThis study investigates the application of unmanned aerial vehicle (UAV)-mounted multispectral sensors to estimate biomass
abstractStepwise multiple linear regression revealed that combining the normalized difference red-edge (NDRE) index and CHM provided the best biomass model
abstractThese findings demonstrate the potential of high-resolution multispectral imaging for efficient biomass assessment
Code and data availability
The article describes UAV multispectral imagery, vegetation indices, CHMs, and stepwise regression models for cover crop biomass, but no public phenotype dataset, imagery, code, or model deposit is provided. The Data Availability Statement only offers to direct inquiries to the corresponding author, and all cited URLs/
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