Learn Battery Management System simulation and thermal management using MATLAB/Simulink with practical EV battery modeling and real-world projects.
The BMS Simulation & Thermal Management course is designed to provide learners with practical knowledge of battery management systems and thermal control techniques used in modern electric vehicles. As the electric mobility industry continues to grow rapidly, efficient battery management and temperature regulation have become critical for improving battery safety, performance, and lifespan.
This course introduces the fundamentals of battery management systems (BMS) and their role in electric vehicles. Learners will understand the structure of EV battery packs, including battery cells, modules, and pack configurations. The course explains how BMS monitors battery parameters such as voltage, current, temperature, and state of charge to ensure safe and efficient battery operation.
Participants will explore key BMS functions including cell balancing, battery protection mechanisms, state of charge (SOC) estimation, state of health (SOH) monitoring, and fault detection. These features are essential for maintaining battery performance and preventing issues such as overcharging, overheating, and deep discharge.
A major focus of the course is thermal management, which is critical in high-performance EV battery systems. Learners will understand how battery temperature affects performance, safety, and efficiency. The program introduces various battery cooling techniques including air cooling, liquid cooling, and phase-change materials used in modern electric vehicles.
The course also provides hands-on experience with MATLAB and Simulink simulations to model and analyze battery systems. Participants will learn how to simulate battery behavior, monitor thermal performance, and evaluate system efficiency under different operating conditions.
Through guided exercises and simulation-based projects, learners will design and analyze battery management strategies, thermal regulation models, and EV battery system simulations. These practical activities help learners understand the engineering workflows used in real EV development environments.
The course is delivered through structured video lectures, step-by-step simulation demonstrations, downloadable MATLAB/Simulink models, and guided project work. Technical support and project guidance are provided to ensure learners can successfully complete the simulations and understand the engineering concepts.
Upon successful completion, participants receive a Course Completion Certificate, validating their knowledge in battery management systems and EV thermal management.
This course is ideal for electrical, electronics, automotive, and mechanical engineering students, graduates, and professionals who want to develop skills in EV battery systems and simulation technologies used in the electric vehicle industry.
Curriculum is being updated.
Yes, once enrolled, you have complete lifetime access to all learning materials, recorded videos, and resources.
Absolutely. A globally recognized, industry-vetted digital certificate is provided upon successful completion of the curriculum.
Yes, we offer a 7-day money-back guarantee if you are not satisfied with the course content or delivery format.