Design and Fabrication of Remote-Controlled Nursing Vehicle

Authors

  • Gopal Kaliyaperumal  Associate Professor, Department of Mechanical Engineering, New Horizon College of Engineering, Bangalore, Karnataka, India
  • Choudhury Rajat Kumar Pattnaik  UG Scholar, Department of Mechanical Engineering, New Horizon College of Engineering, Bangalore, Karnataka, India
  • Akash Kumar Nath  UG Scholar, Department of Mechanical Engineering, New Horizon College of Engineering, Bangalore, Karnataka, India
  • Aditya Dubey  UG Scholar, Department of Mechanical Engineering, New Horizon College of Engineering, Bangalore, Karnataka, India
  • Tarun Kumar Sharma  UG Scholar, Department of Mechanical Engineering, New Horizon College of Engineering, Bangalore, Karnataka, India

DOI:

https://doi.org//10.32628/IJSRSET218434

Keywords:

Automation, Healthcare, Nursing Vehicle, Engineering and Technology

Abstract

The need for remote controlled vehicle which has functions like a robot, to ensure proper monitoring of patients, delivering of needed kits and keeping the hospital environment sanitized, even in the absence of human being, is a serious demand in these times of Covid pandemic. We therefore intend to provide a solution by constructing a nursing vehicle which can be used in hospital surroundings. The project involves use of temperature sensor, water pump, microcontroller, Wi-Fi camera and embedded C language program. The project is locally controlled using ESP8266 based embedded system. The nursing vehicle’s movements are controlled using a Wi-Fi controller and monitored with the help of camera which also has voice kit that can be used for interaction between patients and doctors. The MLX90614 IR temperature sensor is also fitted helping in measuring the temperature of patients. This also has a provision for sanitizing the patient or surroundings using the nozzle and pump kit which is an added advantage in this model. This project provides very stable and reliable system and significantly limits the drawbacks faced in hospital environment. The nursing vehicle will facilitate contactless temperature measurement, delivery of supplies to patients suffering from contagious diseases such as Covid and enables communication between a doctor and a patient adhering to social distancing norms. With this system we can tackle the problems of human resource shortage in hospitals and can be used as substitute for nurse.

References

  1. Johan Potgieter, Glen Bright, Olaf Diegel, Sylvester Tlale, “Internet Control of a Domestic Robot Using a Wireless Lan” ARAA 2002, Auckland.
  2. F. Capezio F. Mastrogiovanni, A. Scalmato, A. Sgorbissa, P. Vernazza, T. Vernazza, R. Zaccaria, “Mobile Robots in Hospital Environments: an Installation Case Study”,ECMR 2011.
  3. David Feil-Seife, Maja J Mataric, “Defining Socially Assistive Robotics”,IEEE 2005, USA.
  4. Ali Gurcan Ozkil, Ali Gurcan; Fan, Zhun; Dawids, Steen; Klaestrup Kristensen, Jens; Christensen, Kim Hardam; Aanaes, Henrik, “Service Robots for Hospitals: A Case Study of Transportation Tasks in a Hospital”, IEEE 2009, China.
  5. Seohyun Jeon, Jaeyeon Lee, “Multi-Robot Multi-Task Allocation for Hospital Logistics”, ICACT 2016, Korea.
  6. Azeta Joseph, Bolu Christian, Abioye A. Abiodun, Festus Oyawale, “A review on humanoid robotics in healthcare”, MATEC Web of Conferences 153, 02004 (2018), ICMME 2017.
  7. Dr.K.Lakshmi Narayanan, Dr.N.Muthukumaran, Dr.G.Rajakumar, Mr. Hameedhul Arshadh, Mr.I.Dinesh, Mr. V.Caleb, “Design and Fabrication of Medicine Delivery Robots for Hospitals”, ICRTCCNT 2019,India.
  8. Simon Thiel, Dagmar Häbe, Micha Block,“Co-operative Robot Teams in a Hospital Environment”, IEEE 2009,Germany.

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Published

2021-08-30

Issue

Section

Research Articles

How to Cite

[1]
Gopal Kaliyaperumal, Choudhury Rajat Kumar Pattnaik, Akash Kumar Nath, Aditya Dubey, Tarun Kumar Sharma, " Design and Fabrication of Remote-Controlled Nursing Vehicle, International Journal of Scientific Research in Science, Engineering and Technology(IJSRSET), Print ISSN : 2395-1990, Online ISSN : 2394-4099, Volume 8, Issue 4, pp.188-198, July-August-2021. Available at doi : https://doi.org/10.32628/IJSRSET218434