In agriculture, site-specific (SS) nutrient management systems have emerged as pivotal tools for enhancing productivity and sustainability. These systems, grounded in the principles of precision agriculture, aim to tailor nutrient application to the unique characteristics of individual field zones, ensuring optimal resource use and profit maximization while mitigating environmental impacts. The adoption of SS nutrient management represents a departure from traditional uniform application methods, trying to address the spatial and temporal variability inherent in landscapes. By integrating advanced technologies such as crop sensors, models, and machine learning, these systems provide farmers with the tools to make data-driven decisions that balance economic gains with environmental stewardship.

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Developments in site-specific (SS) nutrient management systems for precision agriculture

  • D.B. Arnall,
  • S. Sharma,
  • R. Sharry,
  • G.R. Balboa,
  • N. M. Fiorellino,
  • A. Kafe,
  • K. Lewis,
  • V. Reed

摘要

In agriculture, site-specific (SS) nutrient management systems have emerged as pivotal tools for enhancing productivity and sustainability. These systems, grounded in the principles of precision agriculture, aim to tailor nutrient application to the unique characteristics of individual field zones, ensuring optimal resource use and profit maximization while mitigating environmental impacts. The adoption of SS nutrient management represents a departure from traditional uniform application methods, trying to address the spatial and temporal variability inherent in landscapes. By integrating advanced technologies such as crop sensors, models, and machine learning, these systems provide farmers with the tools to make data-driven decisions that balance economic gains with environmental stewardship.