Precision Agriculture Monitoring System
Kuriti Jogi Naidu1, Kannipamula Vijaya Babu2, Chinthala Roshitha Charan Sai1*, Pediredla Ganesh1, Tenkani Gowtham Sai1 ,Nadupuru Somendhra Naidu1 , Chargundla Praneeth1, Gudimalla Sumanth1
1Department of ECE, Centurion University of Technology and Management, Vizianagaram, Andhra Pradesh-, India
2Department of Physics, Centurion University of Technology and Management, Vizianagaram, Andhra Pradesh, India
Corresponding Author E-mail: :roshithachinthala@gmail.com
DOI : http://dx.doi.org/10.13005/bbra/3324
ABSTRACT: Smart agriculture systems leverage advanced versions such as the Internet of Things, sensor networks, and data visualisation methods to optimize farming practices, improve crop yield, and reduce resource consumption. These systems integrate various sensors to monitor environmental parameters such as soil moisture, temperature, humidity, and light intensity. The data which is collected data is analyzed in real-time to provide actionable insights for farmers, enabling precision agriculture. Automated irrigation systems can adjust watering schedules based on soil moisture levels, ensuring optimal water usage. Additionally, smart agriculture systems can include pest detection and weather forecasting capabilities, allowing for timely interventions and better risk management. By utilizing these technologies, farmers can enhance productivity, minimize waste, and promote sustainable farming practices, ultimately contributing to food security and environmental conservation. The paper's feature involves creating a system that can monitor temperature, humidity, moisture, and animal movement in agricultural fields using Arduino sensors. It will send SMS and app notifications to the farmer's smartphone in case of any issues, using Wi-Fi/3G/4G.
KEYWORDS: Arduino; Light Intensity; Humidity; Soil moisture; Temperature
Download this article as:Copy the following to cite this article: Naidu K. J, Babu K. V, Sai C. R. C, Ganesh P, Sai T. G, Naidu N. S, Praneeth C, Sumanth G. Precision Agriculture Monitoring System. Biotech Res Asia 2024;21(4). |
Copy the following to cite this URL: Naidu K. J, Babu K. V, Sai C. R. C, Ganesh P, Sai T. G, Naidu N. S, Praneeth C, Sumanth G. Precision Agriculture Monitoring System. Biotech Res Asia 2024;21(4). Available from: https://bit.ly/3VSFjZy |