Design of Some Chatter free Sliding Mode Controllers for Process Control Applications
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Abstract
In industrial process control, the design and tuning of controllers are more difficult. The
newlinePID controller is themost popular in process industries because of its outstanding efficacy
newlineand simplicity in implementation. But, the processes having time delay and non-linear
newlinebehaviour in addition to known and/or unknown uncertainty and disturbances are dif-
newlineficult to control with such type of conventional controllers. Hence robust controllers are
newlinemore proper choice to handle with such type of problem. Sliding Mode Control (SMC)
newlineis the robust controller which is insensitive to parametric uncertainty and disturbances.
newlineHowever, SMC has unwanted complement known as chattering due to discontinuous
newlineterm in the control law which may be harmful to actuators. Also it can stimulate un-
newlinemodeled high frequency dynamics of the system. Uncertainty and disturbance estimator
newlineis one of robust controlmethods which estimates the unknown dynamics, unknown mea-
newlinesurable disturbances and provides chatter free control. The main objective of the work
newlinepresented in this thesis, is to study and design some chatter free sliding mode controller
newlinestrategies for process control applications by ensuring the stability and enhancing the
newlineperformance of SISO and interacting MIMO processes.
newlineIn this thesis chatter free sliding mode control algorithms are designed and applied
newlinefor process control applications. Some advanced sliding mode control maintains the
newlinemain advantages of standard sliding modes and has the additional advantage that it can
newlinebe used to remove chattering effect and hence, provide smooth control. The proposed
newlinemethods are also improved the performance than conventional sliding mode control.
newlineIn this thesis, second order sliding mode controller (SOSMC), dynamic sliding mode
newlinecontroller (DSMC), fast terminal sliding mode controller (FTSMC) and extended state
newlineobserver based sliding mode controller (ESO-SMC) design approaches are presented for
newlineprocesses control. In all the mentioned approaches some approaches are designed for
newlinemultiple-input multiple