Jul 2026· 2026 International Conference on Electronics, Computing, Communication and Control Technology (ICECCC)· pp. 1-5· 0 citations· 19 references
Abstract
The design and implementation of battery management system (BMS) is presented in this paper, this BMS is for solar photovoltaic applications. The layout employs a microcontroller-based monitoring unit, a lithium-ion battery, and a DC-DC converter to ensure the battery's safety and to maximize the energy available. The proposed BMS monitors key battery metrics such as voltage, current, temperature, state of charge (SOC), and state of health (SOH). To improve the efficiency of the solar panel, a perturb and observe (P&O) based MPPT method is used so that maximum power can be extracted under different conditions and the battery can be charged more effectively. The system performance was checked using both simulation and hardware setup. From the results, it can be observed that the DC link voltage remains nearly constant and the output voltage is properly maintained. Also, the state of charge (SOC) increases gradually as the battery charges. The hardware prototype further shows that the system works properly under real-time conditions. In addition, a GSM module is included for real-time monitoring and to send alerts whenever any abnormal condition occurs. Overall, this work shows that the system can be used as a low-cost and practical solution for battery management in solar applications.
This study presents the design and implementation of a solar-powered lithium-ion battery system for powering a 100 W laptop load. The motivation for the work arises from the high cost and limited availability of replacement laptop batteries, as well as the need for a lightweight and reliable backup power solution. The...
Ariyo Ayodeji O., Banjo Olugbenga A., Adewole Adekunle Olu· Journal of Systematic, Evalu...· 0 citations
The need for fossil fuel electricity usage is increasing every year. If used for a long period of time, it will eventually become exhausted. To reduce the use of fossil fuel energy, other alternatives are needed to maintain the availability of natural resources, one way is by the utilization of solar power renewable en...
Imhabekhai Gregory· International Journal of Eng...· 0 citations
Battery energy storage (BES) systems are vital in the enhancement of sustainability, performance and reliability in today’s power systems particularly for Backup Power Systems (BES), electric vehicles (EV) and for requiring renewable energy integration. This paper presents the development/evaluation of an ESP32-based s...
B. Rohini, S. Amosedinakaran, G. Hemachandra et al.· International Conference on...· 0 citations
This paper presents the design, development, and experimental validation of a real-time solar tracking system integrated with a Maximum Power Point Tracking (MPPT) controller, and a Lithium Iron Phosphate (LiFePO₄) battery storage unit. The proposed system is designed to improve photovoltaic (PV) energy harvesting by c...
Neelima Dudhe, Z. Khan· International journal of re...· 0 citations
South Africa’s EV market is growing faster than its charging infrastructure can keep up. Loadshedding and an already strained national grid make grid-tied charging stations unreliable, which is what motivated this work. This paper describes the design and simulation of an off-grid solar PV system that uses a backup bat...
Andile Khumalo, O. Oni, Kazeem Oyebode· E3S Web of Conferences· 0 citations
This paper introduces a Battery Management System (BMS) for electric vehicles, built around a passive cell balancing strategy. Our aim is to improve the safety and lifetime of the Lithium-Ion battery pack, with a particular focus on cell-to-cell voltage equalization. The proposed system detects voltage disparities betw...
Meryam Elmahri, Malak Bencherqui, Tarik Jarou et al.· EPJ Web of Conferences· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.