Smart Automated Robot Changing Tires using Ultrasonic Sensors

Smart Automated Robot Changing Tires using Ultrasonic Sensors

  IJETT-book-cover           
  
© 2023 by IJETT Journal
Volume-71 Issue-5
Year of Publication : 2023
Author : Abdulrahman Alkandari, Adel Alfoudery, Mustafa Ali Abuzaraida, Abdullah Alshehab
DOI : 10.14445/22315381/IJETT-V71I5P217

How to Cite?

Abdulrahman Alkandari, Adel Alfoudery, Mustafa Ali Abuzaraida, Abdullah Alshehab, "Smart Automated Robot Changing Tires using Ultrasonic Sensors," International Journal of Engineering Trends and Technology, vol. 71, no. 5, pp. 166-174, 2023. Crossref, https://doi.org/10.14445/22315381/IJETT-V71I5P217

Abstract
The drivers of cars always face issues and some difficulties during driving the car on the road with their car’s tires. Puncture of tires, tube bursts, or bends in rims of tires are actions or events that surely lead to a complete stop moving the car, usually without earlier notification. The main idea of doing this study is to design a robot which acts as a mechanic to facilitate changing tires and to avoid any issues with the removal or replacement problem of the tire. Plus, many people don’t have the required skills to change the tire easily and fast, which indeed may cause more problems and be time-consuming. The Robot will be able to carry up the car exactly like the jack, a small motor to remove the old tire and install the new tire. The robot will be developed to replace the mechanic in changing tires and solve this problem, which is considered a real problem for many people.

Keywords
Autonomous robotic arm, Arduino, Microcontroller, Robotic changing wheel, DC motor, Tire puncture fixing system.

References
[1] Vishal N.S, V.Prabhakaran, and Dr.P.Shankar, "Car Tyre Replacement Robot Using Artificial Intelligence,” International Journal of Scientific & Engineering Research, vol. 6, no. 1, 2015.
[2] Dennis E. Farmer, Automatic Jack and Wheel Change System, 2001.
[3] Sourabh Savadattie et al., "Android Controlled Automatic Jack System for Vehicle,” International Journal of Innovative Research in Science, Engineering and Technology, vol. 5, no. 7, pp. 13672-78, 2016.
[Publisher Link]
[4] Mohd Azman Abdullah et al., "Design and Fabrication of Vehicle All-Wheel-Nuts Remover,” International Journal of Computer Science and Electronics Engineering, vol. 1, no. 3, pp. 381-384, 2013.
[Google Scholar] [Publisher Link]
[5] Enas A. Khalid et al., "Real-Time Control of Robotic Hand by Human Hand at Low Cost,” Journal of Mechanical Engineering Research and Developments, vol. 43, no. 3, pp. 455-467, 2020.
[Google Scholar] [Publisher Link]
[6] Maolin Jin et al., "Robust Control of Robot Manipulators Using Inclusive and Enhanced Time Delay Control,” IEEE/ASME Transactions on Mechatronics, vol. 22, no. 5, pp. 2141-2152, 2017.
[CrossRef] [Google Scholar] [Publisher Link]
[7] Saeed B. Niku, Introduction to Robotics: Analysis, Control, Applications. John Wiley & Sons, 2020.
[Google Scholar]
[8] Horigome, Noriyuki, Akira Terui, and Masahiko Mikawa, "A Design and an Implementation of an Inverse Kinematics Computation in Robotics Using Gröbner Bases,” International Congress on Mathematical Softwar, 2020.
[Google Scholar] [Publisher Link]
[9] Abdulrahman Alkandari et al., “Modeling an Automation Safety Massage System (ASMS) Based on Using Arduino and Mobile Applications for Safe Environment,” Journal of Green Engineering, vol. 11, no. 1, pp. 366 – 378, 2021.
[Google Scholar] [Publisher Link]
[10] Abdulrahman Alkandari et al., "Doctor-Patient Queue for Emergency Contact Appointment Registration," International Journal of Engineering Trends and Technology, vol. 71, no. 1, pp. 189-200, 2023.
[CrossRef] [Publisher Link]
[11] Sivi Varghese et al., "Design and Fabrication of Fire Fighting Robotic Arm for Petrochemical Industries," SSRG International Journal of Industrial Engineering, vol. 5, no. 1, pp. 14-16, 2018.
[CrossRef] [Google Scholar] [Publisher Link]
[12] Sameer Grover et al., "Smart Blind Stick," SSRG International Journal of Electronics and Communication Engineering, vol. 7, no. 5, pp. 19-23, 2020.
[CrossRef] [Publisher Link]
[13] Dr.S.Diwakaran et al., "Safe Home Smart Home," SSRG International Journal of Electronics and Communication Engineering, vol. 6, no. 3, pp. 15-17, 2019.
[CrossRef] [Publisher Link]
[14] Priyadarshini. P et al., "Smart Backing Cane for Visually Impaired," SSRG International Journal of Computer Science and Engineering, vol. 7, no. 5, pp. 21-24, 2020.
[CrossRef] [Publisher Link]
[15] Surin Subson, Dechrit Maneetham, and Myo Min Aung, "Kinematics Simulation and Experiment for Optimum Design of a New Prototype Parallel Robot," International Journal of Engineering Trends and Technology, vol. 70, no. 10, pp. 350-362, 2022.
[CrossRef] [Publisher Link]