2026· EPJ Web of Conferences· 0 citations· 4 references
Abstract
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 between cells and activates a bleeding circuit to equalize the State of Charge (SoC). Furthermore, the model integrates a thermal management system that monitors cell temperature and triggers active cooling when a critical threshold is reached. The originality of the work lies in the co-simulation of the BMS together with a vehicle powertrain whose speed is regulated by a Proportional-Integral (PI) controller, allowing the joint validation of balancing, thermal regulation and safety interlocks under a realistic urban driving cycle. Simulation results demonstrate the effectiveness of the passive balancing logic in converging cell voltages and the system's ability to maintain safe operating conditions during driving cycles.
Voltage mismatch in lithium-ion battery packs is a critical issue that influences the efficiency of the system, safety, and the life cycle in general. Traditional balancing methods, especially passive ones, are associated with the loss of energy and poor flexibility in dynamic operating environments. To overcome these...
S. Gambhire, Sunil Hade, Gopal S. Gawande et al.· International Conference on...· 0 citations
This research enhances the operational efficiency of electric vehicle (EV) energy storage by transitioning from conventional passive equalization to an active cell-balancing framework. Unlike passive methods that dissipate surplus energy as thermal waste, the suggested configuration dynamically reroutes power among cel...
Sadanand Harijan, Samir Dankoti, Sangit Neupane et al.· Journal of UTEC Engineering...· 0 citations
Over the last decade, the proliferation of electric vehicles (EVs) has highlighted the importance of robust battery management systems (BMSs) to mitigate cell imbalance driven by manufacturing tolerances, thermal gradients, and non-uniform aging. To address these limitations, this study presents a MATLAB R2023b/Simulin...
M. Kılınç, O. Bingöl, A. Senturk et al.· Batteries· 0 citations
Investigating the memory usage of battery management system (BMS) software functions required for operating the high-voltage battery system (HVBS) of a light-duty electric vehicle (EV) suggests that the BMS software functions occupy a relatively small portion of the S32K358’s 8 MB of flash and 1125 kB of RAM, leaving s...
Rômulo Navega Vieira, Tridib Banik, Pu-Zhou Wang et al.· Energies· 0 citations
Battery thermal management systems (BTMS) on electric vehicles are crucial for efficiently managing battery temperature. The development of BTMS has been a crucial part of the commercialization of electric vehicles. The efficiency of the BTMS has become a bottleneck to increasing the battery's charging and discharging...
N. Ping, Izuan Amin Ishak, M. A. R. Azahar et al.· Journal of Mechanical Engine...· 0 citations
Hybrid electric vehicles use coordinated thermal and electrical power sources to reduce fuel consumption, but battery ageing progressively limits the electrical contribution to propulsion. This study integrates battery ageing into the energy management of a parallel hybrid electric vehicle controlled by an equivalent c...
Yahouza Chapi, Noma Soumaïla, Attoumane Moustapha et al.· Current Journal of Applied S...· 0 citations
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