DocumentCode
3210514
Title
A fixed end-point problem for an electrical drive system
Author
Botan, Corneliu ; Onea, Alexandru
Author_Institution
Iasi Tech. Univ., Romania
Volume
3
fYear
1999
fDate
1999
Firstpage
1345
Abstract
The paper presents an optimal control problem for an electrical drive system with a DC motor. The formulated problem is a linear-quadratic one, with fixed end-point. The optimization criterion and a convenient form for the system mathematical model are formulated and discussed. The computing relations for the open loop control and for the feedback optimal control are established using the classical procedures for the optimal control problem. The feedback optimal control is difficult to apply for real-time control because it involves the computation of the inverse time-variant matrices. On the basis of some previous results, the authors propose a method that leads to a more convenient formula for the computing of the feedback optimal control variable. This formula emphasises a feedback component of the optimal control and a corrective component, depending on the initial state, the disturbance torque and the desired values. The real-time computing effort is not very large because the variable matrices and vectors can be computed at each sample moment by multiplying with a constant increment. The simulation results with the overall control system obtained by numerical simulation with MATLAB show the correct functioning of the controller and the effectiveness of the proposed control method
Keywords
DC motor drives; feedback; machine control; machine theory; matrix inversion; optimal control; DC motor; MATLAB; disturbance torque; electrical drive system; feedback optimal control; feedback optimal control variable; fixed end-point; fixed end-point problem; inverse time-variant matrices; linear-quadratic problem; mathematical model; open loop control; optimal control; optimization criterion; variable matrices; Computational modeling; Control system synthesis; DC motors; Feedback loop; MATLAB; Mathematical model; Numerical simulation; Open loop systems; Optimal control; State feedback;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics, 1999. ISIE '99. Proceedings of the IEEE International Symposium on
Conference_Location
Bled
Print_ISBN
0-7803-5662-4
Type
conf
DOI
10.1109/ISIE.1999.796901
Filename
796901
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