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The simulation model of a brushless DC motor is a crucial aspect of the closed-loop control system, as it allows for quick stabilization of the system even when sudden loads are introduced from the external environment. In order to achieve this, the model must take into account several key factors, such as the motor's internal resistance and inductance, the back electromotive force generated by the motor, and the speed-torque characteristics of the motor. By accurately modeling these factors, engineers can design a robust control system that is capable of responding to a wide range of load conditions and maintaining stable operation over long periods of time. Furthermore, the use of advanced simulation techniques such as finite element analysis and computational fluid dynamics can help to further refine the accuracy and reliability of the motor model, ensuring optimal performance under even the most challenging operating conditions.