Compact Unmanned Aerial Vehicle with Carbon Fibre Frame and Propellor for Underground Application : An Approach

Author:

Yogesh Vaidhyanathan 1,Tarun S 2,Deva Abraham J 2,Dhanush M 2

Affiliation:

1. Assistant Professor, Department of Mechanical Engineering, Vel Tech High Tech Dr. Rangarajan Dr. Sakunthala Engineering College, Avadi Chennai, Tamil nadu, India.

2. Department of Mechanical Engineering, Vel Tech High Tech Dr. Rangarajan Dr. Sakunthala Engineering College, Avadi Chennai, Tamil nadu, India.

Abstract

A drone is a device useful for surveillance, security and improve safety aspects. Drone has many applications contributing in societal developments which is the motivation for the present project work. Drone is being emerged by various military organization, commercial capacity and its applications is increasing day-by-day. Unmanned aerial vehicles are designed as a self-operating device based on receiving feedback from signals and sensors. Brushless DC motor, frames, transmitter, receiver, propellor, flight control board, LiPo battery, electronic speed controllers were used to perform the experimental set-up. An attempt has been made to design light weight drone compared to the conventional drones available. The drone is fabricated in such a manner that initially it performs downward motion into the well followed by the upward motion. All the components of a proposed drone have been fixed and checked for its working. The drone operates in a stable manner with four propellors and contributed its excellence for the underground application.

Publisher

Technoscience Academy

Subject

General Medicine

Reference22 articles.

1. America's Climate Choices: Panel on Advancing the Science of Climate Change; National Research Council (2010). Advancing the Science of Climate Change. Washington, D.C. The National Academies Press. ISBN 0-309-145880.

2. Aviation Safety Unmanned Aircraft Programme Office, in McBride Paul. Beyond Orwell: the application of unmanned aircraft systems in domestic surveillance operations (2009). Journal of Air Law and Commerce Summer Vol. 74, No. 3, pp. 627-628.

3. Bolkcom, C. (2004), Homeland security: unmanned aerial vehicles and border surveillance. Congressional research service report for Congress.

4. U.S. Air force (2010), “MQ-9 Reaper”, available at: http://www.af.mil/AboutUs/FactSheets/Display/tabid/224/Article/104470/mq-9-reaper.aspx (accessed: 15 August 2014).

5. http://www.agx.com.br/n2/pages/index.php, (accessed: 15 August 2014).

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