In control of electrical drives, actuating the physical systems in order to minimize loss or to track a specific reference is the ultimate goal. In most applications, the knowledge of the system parameters are essential for the precise and dynamic control of the closed-loop system, especially for the system under the model-based control. However, parameters may vary during the operation. Additionally, several disturbances and uncertainties can still be noticed in the drive system. The challenge to motivate the work of this thesis prescribes its two parts: the first part addresses the parameter identification problem within the framework of the electrical drive, while the second part of this thesis concerns the optimization of the control performance.
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In control of electrical drives, actuating the physical systems in order to minimize loss or to track a specific reference is the ultimate goal. In most applications, the knowledge of the system parameters are essential for the precise and dynamic control of the closed-loop system, especially for the system under the model-based control. However, parameters may vary during the operation. Additionally, several disturbances and uncertainties can still be noticed in the drive system. The challenge...
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