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Manufacturing of the Portable Electric Scooter Prototype According to Variation of Wheel Number

  • Kwon, Young Woong (Department of Smart Automotive Engineering, Seoil University) ;
  • Ham, Sung Hoon (Department of Automotive Engineering, Daelim University)
  • Received : 2020.03.02
  • Accepted : 2020.03.12
  • Published : 2020.05.31

Abstract

With the emergence of the words Personal Mobility (P.M.) or Smart Mobility (S.M.), which are terms for personal transportation, the activities of related technologies are increasing with the research. Personal transportation is basically used as a short distance transportation method using electrical energy. As personal mobility became more popular, the resulting products and studies are spreading throughout the country. Most of the electric scooters, which are personal vehicles, are mostly imported from China. This is due to the fact that the price competitiveness of major components of electric scooters is owned in China. At this point, the domestic research direction is considered to be desirable in terms of composition and design of the electric scooter body. In this study, the models of portable electric scooters according to the number of wheels mounted on portable electric scooters were presented and the prototypes were produced accordingly. The number of wheels applied to the electric scooter was 2 and 3 and 4; the contents and advantages and disadvantages of the proposed portable electric scooter models were reviewed.

Keywords

References

  1. Y. W. Kwon and H. S. Eu, "Proposal of a Portable Folding Electric Scooter Model and Manufacturing of the Prototype" International Journal of Advanced Smart Convergence Vol.8 No.1 pp.58-64. 2019 DOI: http://dx.doi.org/10.7236/IJASC.2019.8.1.58
  2. Y. W. Kwon and H. S. Eu, "Development of a Portable Electric Scooter Model", J. of the KSMT, Vol. 19, no. 3, pp.427-432, 2017
  3. Y. W. Kwon et. al 4, "Development of a Portable and Foldable Electric Scooter", Proceeding of KSPSE, pp.145-146, 2015. 12.
  4. Y. W. Kwon and M. J. Kim, "Travelling Performance Test of a Small Electric Vehicle equipped the Gradient Response CVT", J. of KSMT, Vol.17 No.5, pp.1116-1120 , 2015. 10
  5. Choi, Hyun Seok, "Study on selection methods according to specifications of domestic electric scooters", master' thesis of Daegu university, 2018
  6. Wang. Tianyang, "Design and research of urban sharing electric scooter", master' thesis of Ewha university, 2018
  7. V. Tran Tuan, et. al 3, "Low Cost Motor Drive Technologies for ASEAN Electric Scooter", J. of the Electrical Engineering & Technol. ; 13(4): 1578-1585, 2018 DOI:http://doi.org/10.5370/JEET.2018.13.4.1578
  8. Chih-Hong Lin, "A PMSM Driven Electric Scooter System with a V-Belt Continuously Variable Transmission Using a Novel Hybrid Modified Recurrent Legendre Neural Network Control", Journal of Power Electronics, Vol. 14, No. 5, pp. 1008-1027, September 2014 DOI: http://dx.doi.org/10.6113/JPE.2014.14.5.1008
  9. Y. W. Kwon and S. S. Choi, "An Experimental Study on the CVT System using the Variable Radius Pulley ", J. of KSMT, Vol.16 No.1, pp.1201-1208, 2014
  10. G. S. Kim and Y. W. Kwon, "The Development of Gradient Response CVT for a Small Size Electric Vehicle" J. of the KSPSE, Vol.19, No.6, pp.33-38, 2015. 12