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  2. Agricultural drone - Wikipedia

    en.wikipedia.org/wiki/Agricultural_drone

    The use of agricultural drones has ethical and social implications. One benefit is that they are able to monitor and control the use of pesticides properly. This allows minimizing the environmental impact of pesticides. However, drones do not require permission to fly over another person's property at altitudes of under 400 feet (120 m).

  3. Digital agriculture - Wikipedia

    en.wikipedia.org/wiki/Digital_agriculture

    Using many sources of information — weather data, GIS spatial mapping, soil sensor data, satellite/drone pictures, etc. — e-extension platforms can provide real-time recommendations to farmers. For example, the machine-learning-enabled mobile app Plantix , Krisikart India diagnoses crops' diseases, pests, and nutrient deficiencies based on ...

  4. Satellite crop monitoring - Wikipedia

    en.wikipedia.org/wiki/Satellite_crop_monitoring

    Satellite crop monitoring technology allows to perform online crop monitoring on different fields, located in different areas, regions, even countries and on different continents. The technology's advantage is a high automation level of sown area condition and its interpretation in an interactive map which can be read by different groups of users.

  5. Microsoft Research project uses drones to track emerging diseases

    www.aol.com/news/2015-06-10-microsoft-project...

    And while that concept isn't exactly new, the method of doing so certainly is: Microsoft is using drones to autonomously identify ideal locations for mosquito traps, as well as placing and ...

  6. Plant disease forecasting - Wikipedia

    en.wikipedia.org/wiki/Plant_disease_forecasting

    The plant disease triangle represents the factors necessary for disease to occur. Plant disease forecasting is a management system used to predict the occurrence or change in severity of plant diseases. At the field scale, these systems are used by growers to make economic decisions about disease treatments for control.

  7. Disease management (agriculture) - Wikipedia

    en.wikipedia.org/wiki/Disease_management...

    In agriculture, disease management is the practice of minimizing disease in crops to increase quantity or quality of harvest yield. Organisms that cause infectious disease in crops include fungi , oomycetes , bacteria , viruses , viroids , virus-like organisms, phytoplasmas , protozoa , nematodes and parasitic plants .

  8. Plant disease - Wikipedia

    en.wikipedia.org/wiki/Plant_disease

    The Food and Agriculture Organization estimates that pests and diseases are responsible for about 25% of crop loss. To solve this, new methods are needed to detect diseases and pests early, such as novel sensors that detect plant odours and spectroscopy and biophotonics that are able to diagnose plant health and metabolism .

  9. Aerial application - Wikipedia

    en.wikipedia.org/wiki/Aerial_application

    A PZL-106 Kruk crop duster applying a fine mist A Mil Mi-8 spreading fertilizer. Aerial application, or what is informally referred to as crop dusting, [1] involves spraying crops with crop protection products from an agricultural aircraft. Planting certain types of seed are also included in aerial application.