A PID controller design method using stability margin with transient improvement criteria
Anand Kumar, Somnath Pan
Abstract
Anand Kumar, Somnath Pan
Abstract
In this work, a PID controller design approach is broached for achieving specified stability margin with improved transient in terms of minimal overshoot. A set of non-linear equations is considered based upon the specified stability margins and a minimal overshoot criterion. The minimal overshoot criterion is demonstrated with an example. Thereby, the PID controller parameters are obtained by solving the equations with the help of MATLAB. Simulations for three examples taken from the literature having different dynamics are illustrated and compared favourably with some PID controllers prevalent in the literature to validate the efficacy of the proposed method.
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In this work, a PID controller design approach is broached for achieving specified stability margin with improved transient in terms of minimal overshoot. A set of non-linear equations is considered based upon the specified stability margins and a minimal overshoot criterion. The minimal overshoot criterion is demonstrated with an example. Thereby, the PID controller parameters are obtained by solving the equations with the help of MATLAB. Simulations for three examples taken from the literature having different dynamics are illustrated and compared favourably with some PID controllers prevalent in the literature to validate the efficacy of the proposed method.
Key concepts: Overshoot (microwave communication), PID controller, Control theory (sociology), Transient (computer programming), MATLAB, Stability (learning theory), Phase margin, Margin (machine learning)