Agriculture Quadcopter

Authors

  • Aniket Shinde Student, Department of Information Technology, SaraswatiCollege of Engineering Kharghar, Navi Mumbai, Maharashtra, India
  • Archee Ashok Vishwakarma Student, Department of Information Technology, SaraswatiCollege of Engineering Kharghar, Navi Mumbai, Maharashtra, India
  • Neha Chhedilal Vishwakarma Student, Department of Information Technology, SaraswatiCollege of Engineering Kharghar, Navi Mumbai, Maharashtra, India
  • Anuradha Dandwate Faculty, Department of Information Technology, SaraswatiCollege of Engineering Kharghar, Navi Mumbai, Maharashtra,India

Keywords:

Quadcopter, raspberry, pesticide, drilling, seeding

Abstract

Agriculture quadcopter is the robot designed for agricultural purpose. The quadcopter is developed using raspberry pi. In India, agriculture is a huge sector, but nowadays, it is facing a lot of problem due to unused modern techniques. This robot can be used to reduce human work considering the efficiency and proper utilization of resources. This can performs essential basic capacities like drilling, seeding, pesticide application etc.

References

Weh H, Hoffman H, Landrath J. New permanent magnet excited synchronous machine with high efficiency at low speeds. Conference: ISEF 2009 XIV International Symposium on Electromagnetic Fields in Mechatronics, Electrical and Electronic Engineering. 2009.

Stumpf J, Gurdon D. Design of a flexible high performance Quadcopter platform breaking the MAV endurance record. 2011 IEEE/RSJ International Conference on Intelligent Robots and Systems. 2011 Sep 25–30; San Francisco, CA, USA.

Meivel S, et al. Quadcopter UAV Based Fertilizer and Pesticide Spraying System. Conference: International Academic Research Journal of Engineering Sciences at Coimbatore. 2016 Feb; 1(1): 8–12.

Kent Shannon D, Clay David E, Kitchen Newell R. Precision Agriculture Basics. ACSESS; 2020 Mar 13; 272.

Krishna KR. Agricultural Drones A Peaceful Pursuit. Canada: Apple Academic Press; 2018 May 22; 412.

Ambrosio Donovan, editor. Domestic drones: elements and considerations for the US. New York: Nova Science Publishers; 2014.

Frank Tobe. Are ag robots ready? 27 companies profiled. The Robot Report; 2014 Nov 18. https://www.therobotreport.com/news/ag-in-transition-from-precision-ag-to-full-autonomy.

Stefanv.com. An Electronic Speed Control Primer. Sailplane and Electric Modeler Magazine; 1997 Sep 30. [Online] Available at: http://www.stefanv.com/electronics/escprimer.html.

Sylvester G. E-Agriculture in Action: Drones for Agriculture. Bangkok, Thailand: Food and Agriculture Organization of the United Nations and International Telecommunication Union Bangkok; 2018; 112. [Online] Available at: http://www.fao.org/3/i8494en/i8494en.pdf.

EurekAlert. Betting on drones as smart agricultural tools for pesticide use in farms. [Online]. Japan: Tokyo University of Science; 2021. Available at: https://www.eurekalert.org/pub_releases/2021- 04/tuos-bod041521.php

Published

2021-06-28

Issue

Section

Review Article