Smart Phone Operated Multipurpose Agricultural Robot

Author:

Rushikesh Mohale 1,Amruta Hanimanale 1,Prof. S. K. More 1

Affiliation:

1. Sinhgad Institute of Technology, Lonavala, Maharashtra, India

Abstract

This robotic vehicle is an agricultural machine of a considerable power and great soil clearing capacity. This multipurpose system gives an advance method to sow, POW, water and cut the crops with minimum man power and labour making it an efficient vehicle. The machine will cultivate the farm by considering particular rows and specific column at fixed distance depending on crop. Moreover the vehicle can be controlled through Bluetooth medium using a Android smart phone. The whole process calculation, processing, monitoring are designed with motors & components interfaced with microcontroller. The primary goal in creating this robot was to simply make farming easier for farmers in the future. The fields of robotics and large-scale agriculture have seen several significant breakthroughs in the current situation. Both technologies are used in this essay. The DTMF approach was employed in this study (Dual Tone Multi Frequency). A cell phone is used to manage our robot, allowing us to make it converse widely and across great distances. This will enable the farmer to easily manage his agricultural tasks from a distance without having to enter the field

Publisher

Naksh Solutions

Subject

General Medicine

Reference7 articles.

1. G.Rajesh, “Microcontroller Based Drip Irrigation System”, International Journal of Emerging Science and Engineering (IJESE) ISSN: 2319–6378, Volume-1, Issue-6, April 2019.

2. Yun Chan Cho, “Remote robot control system based on DTMF of mobile phone”, Industrial Informatics, 2022. INDIN 2022. 6th IEEE International Conference on 13-16 July 2019 at Daejeon.

3. Venkata Naga Rohit Gunturi, “Micro Controller Based Automatic Plant Irrigation System”, International Journal of Advancements in Research & Technology, Volume 2, Issue4, April-2013 ISSN 2278-7763. year 2021

4. Manish Kumar, “Design of Cell Phone Operated Robot Using DTMF for Object Research”, IEEE Wireless and Optical Communications Networks (WOCN), 2013 Tenth International Conference on 26-28 July 2020

5. N.K. Tyagi, “Design and development of an auto irrigation system”, 0378-3774/97/$17.00 0 1997 Elsevier Science B.V. All rights reserved. PII SO378-3774(96)01292-9 year 2021

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