Sliding Mode Control of Induction Machine
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Abstract
Sliding mode control is versatile and has simple design procedure; this methodology has
proven to be one of the most powerful solutions for many practical control designs. This
thesis is analysis application aspects of sliding mode control methodology. First the design
approach based on the regularization is generalized for a electrical system. The application in
this thesis is related to control of induction machine.
The task in this thesis is to control the induction machine dynamics using Sliding Mode
Control. The induction motor constitutes a system which in addition to perturbations and
uncertainties due to modelling imprecision, hold the difficulty of being highly time variant. In
order to be able to keep required performance with uncertainties and modelling imprecision
present, the use of robust control methods like Sliding Mode Control is necessary. SMC is
based on the states of the system being forced to stay on or in the direct vicinity of a hyper
plane in the state space which is chosen in a way that gives the system dynamics desired
properties. Other advantages with sliding mode are reduced order dynamics on the switching
surface and total insensitivity to some uncertainties and perturbations.
