Analysis of Hybrid Electric Vehicle operated by Wind and Solar Energy


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Authors

  • Dawar Khan University of Engineering and technology Mardan
  • Sheraz Khan University of Engineering and technology Mardan
  • Mian Muhammad Amir Ayaz University of Engineering and technology Mardan
  • Aemal Khan University of Engineering and technology Peshawar

Keywords:

Hybrid Electric Vehicles, Battery Management System, Electric Vehicle

Abstract

One of today's most pressing challenges is the energy crisis and pollution brought on by car
emissions. This work evaluates a wind-solar hybrid system designed exclusively for power generation in hybrid
electric vehicles (HEVs). The primary objective is to utilize wind and solar energy effectively in order to
optimize the hybrid system. Further, a foundation is established for future research, highlighting the
importance of incorporating renewable energy into transportation networks. A Battery Management System
(BMS) uses solar panels, wind turbines, converters and electrical outlets to charge HEV batteries. The
Simulation and analytical results demonstrate that the system can successfully producing electricity by utilizing
wind and solar resources, providing a sustainable source of power for hybrid electric vehicles.

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Author Biographies

Dawar Khan, University of Engineering and technology Mardan

Electrical Engineering Department, Pakistan

Sheraz Khan, University of Engineering and technology Mardan

Electrical Engineering Department, Pakistan

Mian Muhammad Amir Ayaz, University of Engineering and technology Mardan

Electrical Engineering Department, Pakistan

Aemal Khan , University of Engineering and technology Peshawar

Electrical Engineering Department, Pakistan

References

Vrabie, C. Electric Vehicles Optimism versus the Energy

Market Reality. Sustainability, 2022: 14(9), 5388.

Aijaz I, Ahmad A. Electric vehicles for environmental

sustainability.

Smart Technologies for Energy and

Environmental Sustainability. 2022:131-45.

Dashputre A, Kaushik A, Pal A, Jariwala D, Yadav K, Shah M.

Geothermal energy integrated multi-effect evaporator (MEE)

and multi-effect distillation (MED)-based desalination

systems:

an ecofriendly and sustainable solutions.

Husnain A. Design and analysis of a micro solar electric vehicle

for application in Pakistan (Doctoral dissertation, Memorial

University of Newfoundland).

Husnain A, Iqbal MT. System Design and PV Sizing of a Micro

Solar Electric Vehicle for Pakistan. In2022 IEEE Conference

on Technologies for Sustainability (SusTech) 2022 Apr 21

(pp. 65-70). IEEE.

Bajaj NS, Joshi RA. Energy materials: Synthesis and

characterization techniques. InEnergy Materials 2021 Jan 1

(pp. 61-82). Elsevier.

Benbouzid M, Berghout T, Sarma N, Djurović S, Wu Y, Ma X.

Intelligent condition monitoring of wind power systems: State

of the art review. Energies. 2021 Sep 20;14(18):5967.

Houari B, Aissa B, Lakhdar L, El Yazid B. DC/DC buck

Converter Prototype for Educational Nanosatellite Power

Sub-System. In2023 International Conference on Advances

in Electronics, Control and Communication Systems

(ICAECCS) 2023 Mar 6 (pp. 1-6). IEEE.

González-Castaño C, Restrepo C, Kouro S, Vidal-Idiarte E,

Calvente J. A bidirectional versatile buck–boost converter

driver for electric vehicle applications. Sensors. 2021 Aug

;21(17):5712.

Alzahrani A. Experimental Investigation of Controlled and

Uncontrolled Rectifiers for Low-Power Wind Turbines.

Applied Sciences. 2023 Mar 23;13(7):4120.

Lubis S. Design and generating energy as a car alternator to be

an alternative electricity. InIOP Conference Series: Materials

Science and Engineering 2019 Nov 1 (Vol. 674, No. 1, p.

. IOP Publishing.

See KW, Wang G, Zhang Y, Wang Y, Meng L, Gu X, Zhang

N, Lim KC, Zhao L, Xie B. Critical review and functional

safety of a battery management system for large-scale

lithium-ion battery pack technologies. International Journal

of Coal Science & Technology. 2022 Dec;9(1):36.

Hung, D.Q., Z.Y. Dong, and H. Trinh, Determining the size of

PHEV charging stations powered by commercial grid

integrated PV systems considering reactive power support.

Applied Energy, 2016. 183: p. 160-169.

Riboldi, C.E.D., Energy-optimal off-design power

management for hybrid-electric aircraft. Aerospace Science

and Technology, 2019: p. 105507-105507.

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Published

2025-01-13

How to Cite

Khan, D., Khan, S., Ayaz, M. M. A., & Khan , A. (2025). Analysis of Hybrid Electric Vehicle operated by Wind and Solar Energy . International Journal of Advanced Natural Sciences and Engineering Researches, 7(11), 20–26. Retrieved from https://as-proceeding.com/index.php/ijanser/article/view/2376

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