Abstract Detailed knowledge of the intra‐field variability of soil properties and crop characteristics is indispensable for the establishment of sustainable precision agriculture. We present an approach that combines ground‐based agrogeophysical soil and aerial crop data to delineate field‐specific management zones that we interpret with soil attribute measurements of texture, bulk density, and soil moisture, as well as yield and nitrate residue in the soil after potato (Solanum tuberosum L.) cultivation. To delineate the management zones, we use aerial drone‐based normalized difference vegetation index (NDVI), spatial electromagnetic induction (EMI) soil scanning, and the EMI–NDVI data combination as input in a machine learning clustering ...
The improvement in crop yield, both in quantity and quality, depends on the adoption of appropriate ...
Management zones (MZs) are used in precision agriculture to diversify agronomic management across a ...
The adoption of precision agriculture has the potential to increase the environmental sustainability...
Detailed knowledge of the intra-field variability of soil properties and crop characteristics is ind...
peer reviewedDetailed knowledge of the intra-field variability of soil properties and crop character...
Proximal soil sensors are receiving strong attention from several disciplinary fields, and this has ...
Properties such as soil apparent electric conductivity (ECa), topography and other site-related data...
Properties such as soil apparent electric conductivity (ECa), topography and other site-related data...
In precision agriculture and agroecosystem modelling, spatially distributed information on soil char...
Intra-field heterogeneity of soil properties, such as soil organic carbon (SOC), nitrogen (N), phosp...
Detailed soil maps are vital in agroecosystem modelling and precision agriculture since the spatial ...
Proximal soil sensors are receiving strong attention from several disciplinary fields, and this has ...
Understanding the interactions among agricultural processes, soil, and plants is necessary for optim...
Understanding the interactions among agricultural processes, soil, and plants is necessary for optim...
Management zones (MZs) are used in precision agriculture to diversify agronomic management across a ...
The improvement in crop yield, both in quantity and quality, depends on the adoption of appropriate ...
Management zones (MZs) are used in precision agriculture to diversify agronomic management across a ...
The adoption of precision agriculture has the potential to increase the environmental sustainability...
Detailed knowledge of the intra-field variability of soil properties and crop characteristics is ind...
peer reviewedDetailed knowledge of the intra-field variability of soil properties and crop character...
Proximal soil sensors are receiving strong attention from several disciplinary fields, and this has ...
Properties such as soil apparent electric conductivity (ECa), topography and other site-related data...
Properties such as soil apparent electric conductivity (ECa), topography and other site-related data...
In precision agriculture and agroecosystem modelling, spatially distributed information on soil char...
Intra-field heterogeneity of soil properties, such as soil organic carbon (SOC), nitrogen (N), phosp...
Detailed soil maps are vital in agroecosystem modelling and precision agriculture since the spatial ...
Proximal soil sensors are receiving strong attention from several disciplinary fields, and this has ...
Understanding the interactions among agricultural processes, soil, and plants is necessary for optim...
Understanding the interactions among agricultural processes, soil, and plants is necessary for optim...
Management zones (MZs) are used in precision agriculture to diversify agronomic management across a ...
The improvement in crop yield, both in quantity and quality, depends on the adoption of appropriate ...
Management zones (MZs) are used in precision agriculture to diversify agronomic management across a ...
The adoption of precision agriculture has the potential to increase the environmental sustainability...