Composite braking module for an electric vehicle

  • Authors

    • Bharath K.R
    • Sreenivasan M.K
    • Gokul Sivaraman
    • Bededala Vineeth Kumar Reddy
    2018-09-22
    https://doi.org/10.14419/ijet.v7i4.5.25079
  • Use about five key words or phrases in alphabetical order, Separated by Semicolon.
  • The efficycle, is a hybrid tricycle which runs on manual and electric power. This paper proposes a method to design a braking load to dissipate the excess energy produced when there is no more requirement for the battery to be charged by regenerative braking. This module was designed for an operating voltage of 8V, resistance value of 0.16 ohm and with a maximum current capacity of 200 A. This resistor was coupled with a buck converter to step down the voltage across the battery to a value convenient for operation of the dissipation resistor.

     


     
  • References

    1. [1] Harkaitz Ibaiondo, Asier Romo, ‘Kinetic Energy Recovery on Railway Systems with Feedback to the Grid’, 14th International Power Electronics and Motion Control Conference, EPE-PEMC, pp 94-97H. Poor, an Introduction to Signal Detection and Estimation, New York: Springer-Verlag, 1985, ch. 4. (Book Chapter).

      [2] Ganesha Udupa and Josh Freeman, “Light weight multipurpose solar powered electric vehicleâ€, Patent No: 4959/CHE/2013 Dated 01/11/2013.

      [3] Ganesha Udupa, Josh Freeman, Vikas Nimbewal, Rajesh Kumar Choudhary, Swoop Sasikumar, Sreeraj V Nair, ‘Design and Manufacture of Amrita Surya Vahini - A Solar Auto Rickshaw’, 2016 International Conference on Robotics and Automation for Humanitarian Applications (RAHA).I. Çolak, E. Kabalci, R. Bayindir R. and S. Sagiroglu, “The design and analysis of a 5-level cascaded voltage source inverter with low THDâ€, 2nd PowerEng Conference, Lisbon, pp. 575-580, 18-20 March 2009. (Conference Paper).

      [4] Amrita Sharma, Bura Pramod, R. K Singh, R.Mahanty, ‘Community development and energy equality: Experiences from micro hydro implementation in a tribal settlement in India’, Humanitarian Technology Conference (R10-HTC), 2016 IEEE Region 10.

      [5] Vishnu Prasad, Jayasree P R, Sruthy V, ‘Hysteresis Current Controller for a micro-grid application’, 2016 International Conference on Energy Efficient Technologies for Sustainability (ICEETS).

      [6] S Mandal, M R I Sarker, M S Rahman, M R A Beg, ‘An Analysis of Braking Energy Regeneration in Electric Vehicles’, International Journal of Renewable Energy Research S. Mandal et al., Vol.7, No.3, 2017.

      [7] Debasri Chakraborty, Arup Kr Nandi, ‘Finding optimal driving strategy of electric vehicle during deceleration with serial regenerative braking’, 2016 IEEE 7th Power India International Conference (PIICON).

      [8] Deepak Paul, Efstathios Velenis, Dongpu Cao, ‘optimal μ -Estimation-Based Regenerative Braking Strategy for an AWD HEV’, IEEE Transactions on Transportation Electrification (Volume: three, Issue: one, March 2017).

      [9] Lars-Henrik Kullingsjö, Sten Karlsson, ‘The possibility for energy regeneration by electrification in Swedish car driving’, 2013 World Electric Vehicle Symposium and Exhibition (EVS27).

      [10] Li Yutong, Zhang Junzhi, Lv Chen, Kong Decong, He Chengkun, ‘Research of Regenerative Braking System for Electrified Buses Equipped with a Brake Resistor’, 2013 IEEE Vehicle Power and Propulsion Conference (VPPC).

      [11] Xiao Hua-qiao, Liu San-min, Wang Zhi-jie, Sun Xia, ‘Efficiency optimization of energy regeneration for electric vehicle’, 2011 International Conference on Electronics, Communications and Control (ICECC).

      [12] Jinyu Qu, Liyan Liang, Zhongyu Yang, ‘Operation Pattern Recognition and Control for Super Capacitor Braking Energy Regeneration System of Micro EV’, 2009 Second International Symposium on Computational Intelligence and Design.

      [13] Jingang Guo, Junping Wang, Binggang Cao, ‘Regenerative braking strategy for electric vehicles’, 2009 IEEE Intelligent Vehicles Symposium.

      [14] Dong Peng, Jianwu Zhang, Chengliang Yin, ‘Regenerative braking control system improvement for parallel hybrid electric vehicle’, 2006 International Technology and Innovation Conference (ITIC 2006).

      [15] Amrit Anand Mahapatra, Tanmaya Pradhan, ‘Electrical braking with improved energy regeneration in induction machine drive’, 2016 International Conference on Recent Advances and Innovations in Engineering (ICRAIE).

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  • How to Cite

    K.R, B., M.K, S., Sivaraman, G., & Vineeth Kumar Reddy, B. (2018). Composite braking module for an electric vehicle. International Journal of Engineering & Technology, 7(4.5), 772-774. https://doi.org/10.14419/ijet.v7i4.5.25079