Title :
Optimum weight selection based LQR formulation for the design of fractional order PIλDμ controllers to handle a class of fractional order systems
Author :
Das, S. ; Pan, Indranil ; Halder, Kaushik ; Das, S. ; Gupta, Arpan
Author_Institution :
Dept. of Power Eng., Jadavpur Univ., Kolkata, India
Abstract :
A weighted summation of Integral of Time Multiplied Absolute Error (ITAE) and Integral of Squared Controller Output (ISCO) minimization based time domain optimal tuning of fractional-order (FO) PID or PIλDμ controller is proposed in this paper with a Linear Quadratic Regulator (LQR) based technique that minimizes the change in trajectories of the state variables and the control signal. A class of fractional order systems having single non-integer order element which show highly sluggish and oscillatory open loop responses have been tuned with an LQR based FOPID controller. The proposed controller design methodology is compared with the existing time domain optimal tuning techniques with respect to change in the trajectory of state variables, tracking performance for change in set-point, magnitude of control signal and also the capability of load disturbance suppression. A real coded genetic algorithm (GA) has been used for the optimal choice of weighting matrices while designing the quadratic regulator by minimizing the time domain integral performance index. Credible simulation studies have been presented to justify the proposition.
Keywords :
control system synthesis; genetic algorithms; linear quadratic control; mathematical programming; matrix algebra; minimisation; open loop systems; signal processing; three-term control; time-domain analysis; GA; ISCO minimization; ITAE minimization; LQR based FOPID controller; control signal; fractional order PIλDμ controller design; fractional order systems; fractional-order PID controller; integral-of-squared controller output minimization; integral-of-time multiplied absolute error minimization; linear quadratic regulator based technique; load disturbance suppression; noninteger order element; optimal control theory; optimum weight selection; oscillatory open loop responses; real coded genetic algorithm; sluggish open loop responses; state variables; time domain integral performance index; time domain optimal tuning; trajectory change minimization; weighted summation; weighting matrices; Genetic algorithms; Minimization; Performance analysis; Process control; Regulators; Time domain analysis; Tuning; Fractional order controller; Linear Quadratic Regulator (LQR); fractional order systems; integral performance index;
Conference_Titel :
Computer Communication and Informatics (ICCCI), 2013 International Conference on
Conference_Location :
Coimbatore
Print_ISBN :
978-1-4673-2906-4
DOI :
10.1109/ICCCI.2013.6466137