Advancing Battery Pack Technology through Enhanced Battery Management System Design and Analysis
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Abstract
Fast advancements in battery technology require sophisticated Battery Management Systems (BMS) in order to ensure security, extend lifespan and optimise efficiency. The development and implementation of a BMS intended especially for new battery spacers is the main topic of this study. These spacers, which are essential for improving battery system structural stability, temperature control and electrolyte distribution, are made of materials that implicitly optimise thermal management. By stabilising the interior temperature of battery packs in Electric Vehicles (EVs), these advances seek to preserve performance and safety in a variety of operating environments. The suggested BMS precisely monitors and maintains vital parameters like voltage, temperature and charge level by utilising cutting-edge sensing technologies, sophisticated control algorithms and dependable communication protocols. Through comprehensive design optimisation, simulation and problem-solving in temperature regulation and fault detection. This work aims to significantly boost the efficiency and security of batteries fitted with these novel spacers. The findings have the potential to drastically change preconceived notions about battery management, hastening the transition to sustainable energy practices by allowing a greater adoption of safer, more efficient energy storage technologies in critical sectors such as renewable energy and EVs.
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