MRI
MRI India Journals Vol. 15 No. 1S (2026): Special Issue: Integration of AI Management Engineering and Technology

Multi Functions Agriculture Car

Authors

  • Prashant Bansode Department of Computer Engineering, Genba Sopanrao Moze College of Engineering Balewadi, Pune, India
  • Reena Asati Department of Computer Engineering, Genba Sopanrao Moze College of Engineering Balewadi, Pune, India
  • Soham Patil Department of Computer Engineering, Genba Sopanrao Moze College of Engineering Balewadi, Pune, India
  • Tejas Kumbhare Department of Computer Engineering, Genba Sopanrao Moze College of Engineering Balewadi, Pune, India
  • Yusuf Khan Department of Computer Engineering, Genba Sopanrao Moze College of Engineering Balewadi, Pune, India

DOI:

https://doi.org/10.65521/ijeecs.v15i1S.3091

Keywords:

Arduino Uno Soil Moisture Sensor Servo Motor L298N Motor Driver Relay Module Smart Agriculture Seeding Robot

Abstract

This project presents the design and implementation of a smart multipurpose agricultural robot capable of performing soil moisture detection, automatic irrigation, seeding, and grass cutting operations. The robot moves autonomously in a straight path of approximately one meter, halts, and deploys a moisture sensor using a servo motor to analyse soil conditions. Based on the moisture level, the system activates a relay-controlled mini water pump for irrigation if the soil is dry, or skips watering if it is adequately moist. A seeder mechanism, driven by an SG90 servo motor, releases a single seed after each moisture check. Simultaneously, a grass cutter motor operates continuously during the robot’s movement, ensuring efficient trimming. The system is powered by an Arduino Uno microcontroller, interfaced with an L298N motor driver for precise motor control and servos for actuation. The robot autonomously repeats the process in a loop, optimizing manual labour in small-scale farming. This low- cost, energy-efficient model demonstrates automation in agriculture by integrating sensing, irrigation, and planting mechanisms within a compact robotic platform.

 

 

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Published

2026-05-23

How to Cite

Bansode, P., Asati, R., Patil, S., Kumbhare, T., & Khan, Y. (2026). Multi Functions Agriculture Car. International Journal of Electrical, Electronics and Computer Systems, 15(1S), 303–307. https://doi.org/10.65521/ijeecs.v15i1S.3091

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