The increasing use of geospatial information from satellites and unmanned aerial vehicles (UAVs) has been contributing to significant growth in the availability of instruments and methodologies for data acquisition and analysis. For better management of vineyards (and most crops), it is crucial to access the spatial-temporal variability. This knowledge throughout the vegetative cycle of any crop is crucial for more efficient management, but in the specific case of viticulture, this knowledge is even more relevant. Some research studies have been carried out in recent years, exploiting the advantage of satellite and UAV data, used individually or in combination, for crop management purposes. However, only a few studies explore the multi-temp...
Unmanned Aerial Vehicles (UAVs) are an exciting new remote sensing tool capable of acquiring high re...
Canopy management is one of the key aspects of vineyard management. Understanding the canopy structu...
High spatial ground resolution and highly flexible and timely control due to reduced planning time a...
Precision viticulture (PV) requires the use of technologies that can detect the spatial and temporal...
In agriculture, remotely sensed data play a crucial role in providing valuable information on crop a...
Precision viticulture (PV) requires the use of technologies that can detect the spatial and temporal...
Precision Viticulture is experiencing substantial growth thanks to the availability of improved and ...
Accurate, timely assessment of the vineyard on a field scale is essential for successful grape yield...
Knowledge of spatial variation of vegetative vigouris essential for site-specific manageme...
Aim: The recent availability of Sentinel-2 satellites has led to an increasing interest in their use...
In recent years, there has been an increasing need to implement sustainability in agricultural syste...
Unmanned Aerial Vehicles (UAVs) with multispectral sensors are increasingly attractive in geoscience...
Information on vegetation cover and soil management is used in hydrological and soil erosion modelin...
Currently, the greatest challenge for vine growers is to improve the yield and quality of grapes by ...
Geomatics is important for agriculture 4.0; in fact, it uses different types of data (remote sensing...
Unmanned Aerial Vehicles (UAVs) are an exciting new remote sensing tool capable of acquiring high re...
Canopy management is one of the key aspects of vineyard management. Understanding the canopy structu...
High spatial ground resolution and highly flexible and timely control due to reduced planning time a...
Precision viticulture (PV) requires the use of technologies that can detect the spatial and temporal...
In agriculture, remotely sensed data play a crucial role in providing valuable information on crop a...
Precision viticulture (PV) requires the use of technologies that can detect the spatial and temporal...
Precision Viticulture is experiencing substantial growth thanks to the availability of improved and ...
Accurate, timely assessment of the vineyard on a field scale is essential for successful grape yield...
Knowledge of spatial variation of vegetative vigouris essential for site-specific manageme...
Aim: The recent availability of Sentinel-2 satellites has led to an increasing interest in their use...
In recent years, there has been an increasing need to implement sustainability in agricultural syste...
Unmanned Aerial Vehicles (UAVs) with multispectral sensors are increasingly attractive in geoscience...
Information on vegetation cover and soil management is used in hydrological and soil erosion modelin...
Currently, the greatest challenge for vine growers is to improve the yield and quality of grapes by ...
Geomatics is important for agriculture 4.0; in fact, it uses different types of data (remote sensing...
Unmanned Aerial Vehicles (UAVs) are an exciting new remote sensing tool capable of acquiring high re...
Canopy management is one of the key aspects of vineyard management. Understanding the canopy structu...
High spatial ground resolution and highly flexible and timely control due to reduced planning time a...