Title :
Multi-Objective PI controller design with an application to speed control of Permanent Magnet DC motor drives
Author :
Kumar, C. Aswani ; Nair, N.K.
Author_Institution :
Dept. of Electron. & Instrum. Eng., Noorul Islam Coll. of Eng., Kumaracoil, India
Abstract :
This paper proposes a Multi-Objective Optimization (EMOO) algorithm is used to tune the Proportional Integral (PI) speed regulator in the Permanent Magnet DC (PMDC) motor drive system It aims at achieving good robustness and struck at global optima. Calculus based methods including gradient approaches mainly search for local optimum solutions, rather than global optimum. Due to the drawbacks that exist in calculus based methods, the proposed method is employed for multiobjective optimization problems. The robustness features of the proposed design approach are verified using multi-objective evolutionary Non-dominated Sorting Genetic Algorithm (NSGA-II) and Non-Dominated Sorting Particle Swarm Optimization (NSPSO). Conflicting objectives considered are rise time and settling time for multi-objective optimization. Speed control of motor of Permanent Magnet DC Motor is achieved with PI speed regulator tuned using NSGA-II and NSPSO. Finally, the Pareto Optimal solutions obtained show the effectiveness of NSPSO in comparison with NSGA-II in design of PID controllers for a highly non-linear process.
Keywords :
DC motor drives; PI control; Pareto optimisation; angular velocity control; control system synthesis; genetic algorithms; nonlinear control systems; particle swarm optimisation; permanent magnet motors; three-term control; PID controller; Pareto optimal solution; calculus based method; multiobjective PI controller design; multiobjective optimization algorithm; nondominated sorting genetic algorithm; nondominated sorting particle swarm optimization; nonlinear process; permanent magnet DC motor drives; proportional integral speed regulator; speed control; DC motors; Genetic algorithms; Pareto optimization; Permanent magnet motors; Sorting; Velocity control; Multi-objective Optimization; NSGA-II; NSPSO; PI Controller; Pareto Optimal front; Speed control;
Conference_Titel :
Signal Processing, Communication, Computing and Networking Technologies (ICSCCN), 2011 International Conference on
Conference_Location :
Thuckafay
Print_ISBN :
978-1-61284-654-5
DOI :
10.1109/ICSCCN.2011.6024588