Design and Implementation of a Solar-Powered Power Bank with Integrated Wireless Charging

  • Unique Paper ID: 199803
  • Volume: 12
  • Issue: 11
  • PageNo: 14280-14285
  • Abstract:
  • The increasing dependence on portable electronic devices has created a strong demand for reliable, sustainable and efficient mobile power solutions. Conventional power banks rely entirely on grid-based electricity, which limits their usability in remote areas and contributes indirectly to environmental degradation. This engineering-based project focuses on the de-sign, development, and working of a solar power bank integrated with wireless charging technology. Unlike survey-based or perception-oriented studies, this paper emphasizes the practical working model, hardware components, system architecture, and operational mechanism of the proposed device.The proposed system utilizes photovoltaic solar panels to harvest solar energy, which is regulated through a charge controller and stored in rechargeable lithium-ion batteries. The stored energy is then supplied to output ports and a wireless charging module for charging compatible electronic devices. Wireless charging is achieved using electromagnetic induction based on Qi-standard principles, enabling cable-free energy transfer. The project aims to provide a compact, portable, and eco-friendly charging solution suitable for outdoor usage, emergency situations, and off-grid environments. The integration of renewable energy with wireless technology enhances usability and reduces dependence on conventional power sources

Copyright & License

Copyright © 2026 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

BibTeX

@article{199803,
        author = {Anannya  Pandey and Ashutosh Marathe},
        title = {Design and Implementation of a Solar-Powered Power Bank with Integrated Wireless Charging},
        journal = {International Journal of Innovative Research in Technology},
        year = {2026},
        volume = {12},
        number = {11},
        pages = {14280-14285},
        issn = {2349-6002},
        url = {https://ijirt.org/article?manuscript=199803},
        abstract = {The increasing dependence on portable electronic devices has created a strong demand for reliable, sustainable and efficient mobile power solutions. Conventional power banks rely entirely on grid-based electricity, which limits their usability in remote areas and contributes indirectly to environmental degradation. This engineering-based project focuses on the de-sign, development, and working of a solar power bank integrated with wireless charging technology. Unlike survey-based or perception-oriented studies, this paper emphasizes the practical working model, hardware components, system architecture, and operational mechanism of the proposed device.The proposed system utilizes photovoltaic solar panels to harvest solar energy, which is regulated through a charge controller and stored in rechargeable lithium-ion batteries. The stored energy is then supplied to output ports and a wireless charging module for charging compatible electronic devices. Wireless charging is achieved using electromagnetic induction based on Qi-standard principles, enabling cable-free energy transfer. The project aims to provide a compact, portable, and eco-friendly charging solution suitable for outdoor usage, emergency situations, and off-grid environments. The integration of renewable energy with wireless technology enhances usability and reduces dependence on conventional power sources},
        keywords = {energy storage, photovoltaic system, renewable energy, solar power bank, wireless charging},
        month = {April},
        }

Cite This Article

Pandey, A. ., & Marathe, A. (2026). Design and Implementation of a Solar-Powered Power Bank with Integrated Wireless Charging. International Journal of Innovative Research in Technology (IJIRT), 12(11), 14280–14285.

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