Publication | Closed Access
Hybrid Control of Induction Motors via Sampled Closed Representations
68
Citations
38
References
2008
Year
Rotor FluxesAnalog IntegratorEngineeringState ObserverMotor DriveMechatronicsMechanical SystemsHybrid ControlProcess ControlElectrical DriveMathematical Control TheoryContinuous FeedbackControl Engineering
<para xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink"> In this paper, a controller for induction motors is proposed. A continuous feedback is first applied to obtain a discrete-time model in closed form. Then, on the basis of these exact sampled dynamics, a discrete-time controller ensuring speed and flux modulus reference tracking is determined, making use of the sliding mode technique. The resulting controller is hence hybrid, in the sense that it contains both continuous and discrete-time terms. It is shown how to implement such a hybrid controller using the so-called exponential holder, which is the only device to be implemented analogically, together with an analog integrator. Moreover, a discrete-time reduced-order observer is designed for rotor fluxes and load torque estimation. The performance of the proposed controller is finally studied by simulation and experimental tests. </para>
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