BLDC Hub Motor Controller for Electric Two-Wheeler

Authors

  • Mrs.Deepali Newaskar Research Scholar, Department of Electronics and Telecommunication Engineering, Savitribai Phule Pune University, Pune, Maharashtra 411007, India
  • Aditya Tipre Research Scholar, Department of Electronics and Telecommunication Engineering, Savitribai Phule Pune University, Pune, Maharashtra 411007, India
  • Kaushal Bawse Research Scholar, Department of Electronics and Telecommunication Engineering, Savitribai Phule Pune University, Pune, Maharashtra 411007, India
  • Alok Raj Research Scholar, Department of Electronics and Telecommunication Engineering, Savitribai Phule Pune University, Pune, Maharashtra 411007, India
  • Manoj Desai Research Scholar, The Automotive Research Association of India, Pune, Maharashtra 410501, India
  • Apurva Desai Research Scholar, The Automotive Research Association of India, Pune, Maharashtra 410501, India
  • Sivaraman K Research Scholar, The Automotive Research Association of India, Pune, Maharashtra 410501, India

DOI:

https://doi.org/10.37628/jrfd.v6i2.1397

Abstract

Increasing demands on vehicles uses, is giving new growth in mechanisms which connects with electrical vehicles(EV). Different industry applications demand DC brushless motor i.e. BLDC hub motor. The rotor position is sensed by the controller, accordingly controller fixes the direction of current flowing to the stator. The design of the controller is also implemented. The design consists of MOSFETS as switching devices, microcontroller, some logic gates, sensors and BLDC Hub motor.

 

Keywords—  Microcontroller; Sensor; 

Author Biography

  • Mrs.Deepali Newaskar, Research Scholar, Department of Electronics and Telecommunication Engineering, Savitribai Phule Pune University, Pune, Maharashtra 411007, India

    Research Scholar,Department of Electronics and Telecommunication Engineering

    Savitribai Phule Pune University-India (SPPU)

    Pune, India

References

Bergsson K. Hybrid vehicle history more than a century of evolution and refinement; 2005 [cited Jul 13 2013]. Available from: http://www.

hybrid-vehicle.org/hybrid-vehicle-history.html.

Tashakori A, Ektesabi M, Hosseinzadeh N. Characteristics of suitable drive train for electric vehicle. Proceeding of the international conference on instrumentation, measurement, circuits and systems. ICIMCS 2011, Hong Kong, China. pp. 535–41, December 2011. doi: 10.1109/IECON.2003.1280101.

Lee EC. Application of brushless dc drives in blow molding. Power Tech Industrial Motors; 1993. Available from: https://www.yumpu.com/.

Kim T-H, Ehsani M. Sensorless control of the BLDC motors from near-zero to high speeds. IEEE Trans Power Electron. 2004;19(6):1635–45. doi: 10.1109/TPEL.2004.836625.

Tashakori A, Ektesabi M. Direct torque-controlled drive train for electric vehicle. Proceeding of the World Congress on Engineering. Lect Notes Eng Comput Sci. 2012;2, London, UK.:948952, July 2012 (WCE. 2012), vol.

Tashakorim A, Ektesabi M. A simple fault tolerant control system for hall effect sensors failure of BLDC motor. Proceeding of the 8th IEEE Conference on Industrial Electronics and Applications. ICIEA 2013, Melbourne, Vic, pp. 1011–6, 2013.

Chen W, Xia C. Sensorless control of brushless DC motor based on fuzzy logic. In2006 6th World Congress on Intelligent Control and Automation 2006 Jun 21. Vol. 2. IEEE South Korea. p. 6298–302.

Kim TH, Lee HW, Ehsani M. Advanced sensorless drive technique for multiphase BLDC motors. IECON. In30th Annual Conference of IEEE Industrial Electronics Society November 2. Vol. 1. IEEE China; 2004 2004. p. 926–31

Published

2021-02-18

Issue

Section

Articles