DUAL BATTERY CONTROLLER FOR SOLAR BASED ELECTRIC VEHICLE

Authors

  • V. Mohan Professor, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India
  • M. Ashokkumar Student, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India
  • M. Duraimurugan Student, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India
  • R. Sathishkumar Student, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India
  • R. Santhosh Student, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India
  • K. Jhagannath Assistant Professor, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India

DOI:

https://doi.org/10.29121/granthaalayah.v11.i7.2023.5178

Keywords:

Electric Vehicle, Dual Battery Controller, Solar Based Electric Vehicle

Abstract [English]

This paper presents the design and implementation of a dual battery controller for a solar-based electric vehicle. The proposed controller manages two batteries: a primary battery that powers the vehicle's electric motor, and a secondary battery that is charged by a solar panel. The controller ensures that both batteries are charged optimally and prevents overcharging or deep discharge. The controller also allows the vehicle to operate solely on the secondary battery when the primary battery is empty, extending the vehicle's range. The design is implemented on an Arduino board and tested in a prototype vehicle. Experimental results show that the dual battery controller increases the vehicle's range and efficiency by effectively utilizing solar power. The proposed controller can be a cost-effective solution for increasing the range of electric vehicles.

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Author Biographies

V. Mohan, Professor, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India

 

 

 

M. Ashokkumar, Student, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India

 

 

M. Duraimurugan, Student, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India

 

 

R. Sathishkumar, Student, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India

 

 

R. Santhosh, Student, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India

 

 

K. Jhagannath, Assistant Professor, Department of Electrical and Electronics Engineering, E.G.S. Pillay Engineering College, Nagapattinam, Tamilnadu, India

 

 

References

Abdullah, M. B. et al. (2017). Development of Dual Battery Charge Controller for Solar Electric Vehicle, IEEE Conference on Energy Conversion (CENCON), 42–45.

Choi, C. B., & Cho, S. J. (2014). A Study on a Dual-Battery System For Electric Vehicles. Journal of Electrical Engineering and Technology, 9(4), 1315–1323.

Gupta, A., Bhargava, S., & Vyas, A. (2018). A Review on Dual Battery Control System for Solar Electric Vehicles. International Journal of Engineering Science and Computing, 8(6), 16429–16432.

Gupta, R. K. et al. (2019). Development of Dual-Battery Solar Charging System for Electric Vehicle, 2nd International Conference on Electrical, Electronics and Computer Engineering (ICEECE), 1–6.

Han, L., Zhang, Y., & Xiong, R. (2021). Literature Review of Dual-Battery Controller for Solar Based Electric Vehicle. In International Conference of Energy, Electrical and Power Engineering (CEEPE). IEEE Publications, 138–142.

John, D. C. et al. (2018). Design and Development of Dual Battery Charging and Management System for Solar Based Electric Vehicle, International Conference on Electrical, Electronics, Communication, Computer, and Optimization Techniques (ICEECCOT), 391–396.

Kim, D. H. et al. (2016). Development of Dual Battery System with an Ultra-Capacitor for Electric Vehicles, 11th International Conference on Power Electronics—ECCE Asia (ICPE 2016-ECCE Asia), 332–338.

Kumar, G. N. N., & Prasad, V. R. (2019). ‘Design and Simulation of a Solar-Based Dual-Battery System for Electric Vehicles’, published in the International Journal of Power Electronics and Drive Systems in. (2019), Serial Number, 10(1), 427–433.

Mohan, V., & Senthilkumar, S. (2022). Iot Based Fault Identification in Solar Photovoltaic Systems Using an Extreme Learning Machine Technique. Journal of Intelligent and Fuzzy Systems, 43(3), 3087–3100. https://doi.org/10.3233/JIFS-220012. DOI: https://doi.org/10.3233/JIFS-220012

Nguyen, H. H. et al. (2019). Design of Dual-Battery Power Management System for Electric Vehicles IEEE International Conference on Industrial Technology (ICIT), 1168–1172.

Panneerselvam, K., & Muruganantham, V. (2019). Literature Survey on Dual Battery Control System for Solar Electric Vehicles. International Journal of Recent Technology and Engineering, 8(3), 6282–6287.

Phalak, S. M. et al. (2020). Design and Development of Dual Battery Controller for Solar-Based Electric Vehicle, 2nd International Conference on Intelligent Sustainable Systems (ICISS), 936–941.

Pratap, K., & Srinivasan, K. (2020). A Comprehensive Review of Dual Battery Management Systems for Solar Electric Vehicles. In International Conference on Emerging Trends in Smart Technologies (ICETST). IEEE Publications, 1–5.

Senthilkumar, S., V., M., R., D., M., N. S., Kumar, T. S., Thanikanti, S. B., & N., P. (2023). A REVIEW ON MPPT ALGORITHMS FOR SOLAR PV SYSTEMS. International Journal of Research -GRANTHAALAYAH, 11(3), 25–64. https://doi.org/10.29121/granthaalayah.v11.i3.2023.5086. DOI: https://doi.org/10.29121/granthaalayah.v11.i3.2023.5086

Shehzad, S. A. et al. (2019). Design and Implementation of a Dual Battery Controller For Solar-Based Electric Vehicles. International Conference on Robotics and Automation for Humanitarian Applications (RAHA), 1–5.

Singh, A., Sharma, S., & Mishra, R. (2018). A Literature Review on Dual Battery Control System for Solar Based Electric Vehicle. International Journal of Scientific Research in Computer Science, Engineering and Information Technology, 4(3), 1–5.

Tran, N. T. et al. (2019). Dual-Battery Power Management System for Electric Vehicles, 2nd International Conference of Advanced Technologies for Signal and Image Processing (ATSIP), 67–72.

Tran, T. K. et al. (2017). A Dual-Battery Configuration for Electric Vehicles, IEEE International Conference on Environment and Electrical Engineering and IEEE Industrial and Commercial Power Systems Europe (EEEIC/I &CPS Europe), 1–6.

Tran, T. K. et al. (2018). A Dual-Battery Configuration for Electric Vehicles with Photovoltaic Recharging, Energies, 11(8), 2141.

Wu, Y. X., & Wu, Y. Q. (2016). Design of Dual Battery Charger for Solar Electric Vehicle Based on Dual-Loop Control Strategy, 35th Chinese Control. Conference, CCC, 4443–4448.

Yadav, S. K., & Jagtap, S. S. (2018). ‘Design and Development of Solar-Based Dual Battery Electric Vehicle’. published in the International Journal of Scientific and Engineering Research in 2018, Serial Number, 9(10), 711–717.

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Published

2023-08-01

How to Cite

V., M., Ashokkumar, M., M., D., R., S., R., S., & K., J. (2023). DUAL BATTERY CONTROLLER FOR SOLAR BASED ELECTRIC VEHICLE. International Journal of Research -GRANTHAALAYAH, 11(7), 1–10. https://doi.org/10.29121/granthaalayah.v11.i7.2023.5178