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A solar-powered multi-functional portable charging device (SPMFPCD) with internet-of-things (IoT)-based real-time monitoring—An innovative scheme towards energy access and management

Authors :
Anis ur Rehman
Ishaq G. Muhammad Alblushi
Muhammad Fahad Zia
Haris M. Khalid
Usman Inayat
Mohamed Benbouzid
S.M. Muyeen
Ghulam Amjad Hussain
Source :
Green Technologies and Sustainability, Vol 3, Iss 1, Pp 100134- (2025)
Publication Year :
2025
Publisher :
KeAi Communications Co., Ltd., 2025.

Abstract

In the absence of portable charging devices, sectors such as transportation, communication, and emergency services deal with various challenges towards electric power needs while compromising on (1) operational efficiency, (2) insufficient portable charging solutions, and (3) limited versatility. This highlights the critical need for reliable and multi-functional power solutions. To provide a portable charging solution across diverse sectors, this paper proposes an innovative development of a solar-powered multi-functional portable charging device (SPMFPCD) with internet- of-thing (IoT)-based monitoring capabilities. The proposed scheme introduces a comprehensive model integrating advanced technologies which include a highly efficient solar panel, charge controller, sensors, and IoT module. The proposed system facilitates versatile charging solutions for a wide range of power requirements with real-time monitoring and data analysis through the IoT platform. Moreover, the proposed work explores the applications of the SPMFPCD in (1) emergency medical scenarios, (2) outdoor adventures, (3) disaster management, and 4) public spaces. Performance evaluation was made by proposing case studies to validate the (1) economic viability, (2) power management, and (3) environmental impact of widespread deployment of SPMPFCD in public spaces. Furthermore, detailed analysis of battery energy storage system (BESS) and photovoltaic (PV) integration for load management, seasonal dynamics, and renewable energy integration (REI) contribute to a comprehensive understanding of the proposed solution.

Details

Language :
English
ISSN :
29497361
Volume :
3
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Green Technologies and Sustainability
Publication Type :
Academic Journal
Accession number :
edsdoj.25092d8522d54942a8205bfe690219d3
Document Type :
article
Full Text :
https://doi.org/10.1016/j.grets.2024.100134