چکیده مقاله
The increasing demand for sustainable mobility highlights the need for accurate modeling and energy management strategies in electric vehicles EVs This study presents the development and validation of a comprehensive EV simulation platform in MATLAB/Simulink, integrating driver, motion control, and vehicle dynamics modules The vehicle body, tires, transmission, permanent magnet synchronous motor PMSM , auxiliary loads, and battery pack are represented with high fidelity models, with parameters derived from technical specifications and field measurements Unknown parameters, including rolling resistance and aerodynamic drag coefficients, were identified through coast down and steady state tests using CAN based data acquisition Real world driving experiments were conducted on urban routes, and recorded vehicle speed profiles were employed as reference inputs for the driver model Results demonstrate that the simulated vehicle speed trajectory closely tracks the reference profile, with errors remaining within 4 km/h for most of the test duration Furthermore, the simulated state of charge SOC profile exhibits strong agreement with experimental data, confirming the model's capability to estimate battery energy consumption under realistic driving conditions The proposed framework reduces the gap between simulation and field performance, enabling reliable evaluation of energy management strategies for improved EV efficiency and range prediction
کلیدواژهها
نویسندگان
شیوه ارجاع
Alavi, Hassan and Alaeizadeh, Hadi and Bazrcar, Mohammad and Talaei, Atieh and Salavati, Mojtaba,1404,Development of A Realistic Electric Vehicle Dynamic Model For Energy Management Purposes,2nd International Conference on Modern Power Trains,Tehran
ارائهشده در
مجموعه مقالات دومین همایش بین المللی قوای محرکه نوین22 مهر 1404 · تهران