International Journal of Science and Qualitative Analysis

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An Innovative Construction of Wheelchair for Handicapped Persons

Received: 19 December 2017    Accepted: 23 January 2018    Published: 5 February 2018
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Abstract

This paper represents an important issue with accumulating separate fundamental mechanisms through the wheelchair for the handicapped persons as world is getting tired by seeing the handicapped scenarios for accidental or natural circumstances. Our job is to provide them a pretty easier life with the invention of this modified wheelchair. This chair consists of some important section of project for the handicapped person where all the belongings have been powered by mainly Arduino Uno. Along with this some additional devices like sensor, microcontroller, Bluetooth module, buzzed module and Android software have been used to fulfil the requirement. The chair moves with the directions of the navigation keys from Android mobile. For the deaf person a display has been used with a view to making better communication level with others by the voice command from Android mobile software. Besides, it can detect the obstacle from the front position for better justification of the user. However, this chair is sensible in detecting the hole or crack from the front position of the chair. Sensing living being from the front position is also a responsible duty which will be helpful for blind person indeed. Not only this but also a strong automation system has been provided to control the home appliances with the help of Android software. A 12.5 volt 1 Amp and 5V Battery have been used to power the tasks. This intelligent chair can carry up to 150 kilogram weight which will make a revolution indeed. The entire cost for this job was TK 13500 BDT (150 USD).

DOI 10.11648/j.ijsqa.20180401.13
Published in International Journal of Science and Qualitative Analysis (Volume 4, Issue 1, March 2018)
Page(s) 13-19
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Bluetooth, DC Motors, Home Automation, Sonar Detection, Relays

References
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[2] Dejan Nedelkovski, Ultrasonic Sensor HC-SR04 and Arduino Tutorial, Journal of Mechatronics, Jan 2014.
[3] Hasan U. Zaman, Md. Majidul Haque Bhuiyan, Montashir Ahmed, S. M Tarek Aziz, A novel design of line following robot with multifarious function ability, International Conference on Microelectronics, Computing and Communications (MicroCom), Jan 2016.
[4] Brígida Mónica Faria, Luís Paulo Reis, Nuno Lau, A Survey on Intelligent Wheelchair Prototypes and Simulators, Part of the Advances in Intelligent Systems and Computing book series, Mar 2014.
[5] Arun Kumar Garg, Edge Detector Robot with ATmega32 using Analog IR Sensor, Journal of IR Sensors, Jun 2014.
[6] Tazdik Patwary Plateau, Evaluation of Tensile Strength of Jute Fiber Reinforced Polypropylene Composite, Journal of Advances in Materials, Science PG, Dec 2017.
[7] Timothy P. Sabol, Evelyn S. Haley, Wheelchair Evaluation for the Older Adult, Journal of Clinics in Geriatric Medicine, Elsevier, May 2006.
[8] Susan I. Fuhrman, Patricia E. Karg, Gina E. Bertocci, Effect of wheelchair headrest use on pediatric head and neck injury risk outcomes during rear impact, Journal of Accident Analysis & Prevention, Elsevier, July 2008.
[9] A. Naga Rajesh, S. Chandralingam, T. Anjaneyulu, K. Satyanarayana, EOG Controlled Motorized Wheelchair for Disabled Persons, International Journal of Mechanical and Materials Engineering, May 2015.
[10] Tazdik Patwary Plateau, Md. Majidul Haque Bhuiyan, A heuristic proposition of efficient copper-electrodeposited p-type thin film for CZTS solar cell, International Conference on Electrical, Computer and Communication Engineering (ECCE), Feb 2017.
[11] Lisa Hilliard, Phillip Dunston, James Mc Glothlin, Bradley S. Duerstock, Designing Beyond the ADA - Creating an Accessible Research Laboratory for Students and Scientists with Physical Disabilities, Journal of Chemical Education, Nov 2012.
[12] H. Sermeno-Villalta, J. Spletzer, Vision-based control of a smart wheelchair for the automated transport and retrieval system (ATRS), IEEE International Conference on Robotics and Automation, ICRA, May 2006.
[13] E. K. Skordilis, C. Sherrill, A. Yilla D. Koutsouki, N. A. Stavrou, Use of the Sport Orientation Questionnaire with Wheelchair Athletes: Examination of Evidence for Validity, Perceptual and Motor Skills, August 2002.
[14] Tazdik Patwary Plateau, A Cheap Way to Develop Absorber Layer of Solar Cell Using CuO Thin Film, 4th International Conference on Advances in Electrical Engineering (ICAEE), IUB Campus, Dhaka, Bangladesh, Sept 2017.
[15] Chandra Foreman, Jennifer Hardin, The Challenges Of Wheelchair Securement: Searching For Solutions, Journal of Urban Transportation, Feb 2001.
[16] Ruwaidy Mat Rasul, Standardized Wheelchair Assessment Towards Practical Wheelchair Design, Journal of Advanced Nursing, Oct 2013.
[17] A. F. Kadmin, A. Z. Jidin, Abu Bakar, K. A. A Aziz, W. N. Abd Rashid, Wireless Voice-Based Wheelchair Controller System, Journal of Telecommunication, Electronic and Computer Engineering, Apr 2007.
[18] Mark Hartridge, Barry R. Seeger, International Wheelchair Standards: A Study of Costs and Benefits, The Official Journal of RESNA- Assistive Technology, Oct 2010.
[19] Amos G. Winter, Mario A. Bollini, Benjamin M Judge, Natasha K Scolnik, Harrison F O’Hanley, Daniel S Dorsch, Sudipto Mukherjee, Daniel D Frey, Stakeholder-Driven Design Evolution of the Leveraged Freedom Chair Developing World Wheelchair, American Society of Mechanical Engineers (ASME), November 2012.
[20] E. B. Vander Poorten, E. Demeester, E. Reekmans, J. Philips, A. Hüntemann, J. De Schutter, Powered wheelchair navigation assistance through kinematically correct environmental haptic feedback, May 2012.
[21] Robin L. Drespel, An Evaluation of Wheelchair Restraint Systems Used in the Transportation of Disabled Persons, Retrospective Theses and Dissertations, Dec 1985.
[22] AndrewDavies, NicolaChristie, An exploratory study of the experiences of wheelchair users as aircraft passengers – implications for policy and practice, Journal of IATSS Research, July 2017.
[23] Jyothi Rani, B. Adhithya, Eye Controlled Wheelchair System Along With Hand Talk, International Journal of Engineering, Technology, Management and Research, Nov 2016.
Cite This Article
  • APA Style

    Samsul Islam Shawon, Mohammad Majidul Haque Bhuiyan, Tazdik Patwary Plateau. (2018). An Innovative Construction of Wheelchair for Handicapped Persons. International Journal of Science and Qualitative Analysis, 4(1), 13-19. https://doi.org/10.11648/j.ijsqa.20180401.13

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    ACS Style

    Samsul Islam Shawon; Mohammad Majidul Haque Bhuiyan; Tazdik Patwary Plateau. An Innovative Construction of Wheelchair for Handicapped Persons. Int. J. Sci. Qual. Anal. 2018, 4(1), 13-19. doi: 10.11648/j.ijsqa.20180401.13

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    AMA Style

    Samsul Islam Shawon, Mohammad Majidul Haque Bhuiyan, Tazdik Patwary Plateau. An Innovative Construction of Wheelchair for Handicapped Persons. Int J Sci Qual Anal. 2018;4(1):13-19. doi: 10.11648/j.ijsqa.20180401.13

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  • @article{10.11648/j.ijsqa.20180401.13,
      author = {Samsul Islam Shawon and Mohammad Majidul Haque Bhuiyan and Tazdik Patwary Plateau},
      title = {An Innovative Construction of Wheelchair for Handicapped Persons},
      journal = {International Journal of Science and Qualitative Analysis},
      volume = {4},
      number = {1},
      pages = {13-19},
      doi = {10.11648/j.ijsqa.20180401.13},
      url = {https://doi.org/10.11648/j.ijsqa.20180401.13},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ijsqa.20180401.13},
      abstract = {This paper represents an important issue with accumulating separate fundamental mechanisms through the wheelchair for the handicapped persons as world is getting tired by seeing the handicapped scenarios for accidental or natural circumstances. Our job is to provide them a pretty easier life with the invention of this modified wheelchair. This chair consists of some important section of project for the handicapped person where all the belongings have been powered by mainly Arduino Uno. Along with this some additional devices like sensor, microcontroller, Bluetooth module, buzzed module and Android software have been used to fulfil the requirement. The chair moves with the directions of the navigation keys from Android mobile. For the deaf person a display has been used with a view to making better communication level with others by the voice command from Android mobile software. Besides, it can detect the obstacle from the front position for better justification of the user. However, this chair is sensible in detecting the hole or crack from the front position of the chair. Sensing living being from the front position is also a responsible duty which will be helpful for blind person indeed. Not only this but also a strong automation system has been provided to control the home appliances with the help of Android software. A 12.5 volt 1 Amp and 5V Battery have been used to power the tasks. This intelligent chair can carry up to 150 kilogram weight which will make a revolution indeed. The entire cost for this job was TK 13500 BDT (150 USD).},
     year = {2018}
    }
    

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    AB  - This paper represents an important issue with accumulating separate fundamental mechanisms through the wheelchair for the handicapped persons as world is getting tired by seeing the handicapped scenarios for accidental or natural circumstances. Our job is to provide them a pretty easier life with the invention of this modified wheelchair. This chair consists of some important section of project for the handicapped person where all the belongings have been powered by mainly Arduino Uno. Along with this some additional devices like sensor, microcontroller, Bluetooth module, buzzed module and Android software have been used to fulfil the requirement. The chair moves with the directions of the navigation keys from Android mobile. For the deaf person a display has been used with a view to making better communication level with others by the voice command from Android mobile software. Besides, it can detect the obstacle from the front position for better justification of the user. However, this chair is sensible in detecting the hole or crack from the front position of the chair. Sensing living being from the front position is also a responsible duty which will be helpful for blind person indeed. Not only this but also a strong automation system has been provided to control the home appliances with the help of Android software. A 12.5 volt 1 Amp and 5V Battery have been used to power the tasks. This intelligent chair can carry up to 150 kilogram weight which will make a revolution indeed. The entire cost for this job was TK 13500 BDT (150 USD).
    VL  - 4
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    ER  - 

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Author Information
  • Department of Electrical and Electronics Engineering, American International University, Dhaka, Bangladesh

  • Department of Electrical and Computer Science Engineering, North South University, Dhaka, Bangladesh

  • Department of Materials and Metallurgical Engineering, Bangladesh University of Engineering and Technology, Dhaka, Bangladesh

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