This paper presents an integrated approach that combines MATLAB simulation and hardware design for the development of efficient and reliable solar charging stations. The MATLAB simulation model analyzes crucial parameters, including solar panel characteristics, battery capacity, and user demand, to optimize the behavior and performance of the charging station. Utilizing the insights gained from the simulation, a hardware prototype is designed and constructed, incorporating solar panels, power management systems, and user-friendly features. The iterative process between simulation and hardware design enables continuous refinement and enhancement, resulting in the development of optimized charging stations. This methodology contributes to the advancement of sustainable charging infrastructure by seamlessly integrating MATLAB simulation and hardware design, providing a comprehensive solution for effective utilization of solar energy in charging stations. The findings presented in this paper offer valuable insights for researchers, engineers, and practitioners involved in the design and optimization of solar charging stations
Citations
APA: Amarabalan.N, Priya.R (2025). Design and Analysis of Solar-Powered Electric Vehicle Station. DOI: 10.86493/OTJ.25341008
AMA: Amarabalan.N, Priya.R. Design and Analysis of Solar-Powered Electric Vehicle Station. 2025. DOI: 10.86493/OTJ.25341008
Chicago: Amarabalan.N, Priya.R. "Design and Analysis of Solar-Powered Electric Vehicle Station." Published 2025. DOI: 10.86493/OTJ.25341008
IEEE: Amarabalan.N, Priya.R, "Design and Analysis of Solar-Powered Electric Vehicle Station," 2025, DOI: 10.86493/OTJ.25341008
ISNAD: Amarabalan.N, Priya.R. "Design and Analysis of Solar-Powered Electric Vehicle Station." DOI: 10.86493/OTJ.25341008
MLA: Amarabalan.N, Priya.R. "Design and Analysis of Solar-Powered Electric Vehicle Station." 2025, DOI: 10.86493/OTJ.25341008