Title :
Robust tracking enhancement of robot systems including motor dynamics: a fuzzy-based dynamic game approach
Author :
Chen, Bor-Sen ; Uang, Huey-Jian ; Tseng, Chung-Shi
Author_Institution :
Dept. of Electr. Eng., Nat. Tsing Hua Univ., Hsinchu, Taiwan
fDate :
11/1/1998 12:00:00 AM
Abstract :
A robust tracking control design of robot systems including motor dynamics with parameter perturbation and external disturbance is proposed in this study via adaptive fuzzy cancellation technique. A minimax controller equipped with a fuzzy-based scheme is used to enhance the tracking performance in spite of system uncertainties and external disturbance. The design procedure is divided into three steps. At first, a linear nominal robotic control design is obtained via model reference tracking with desired eigenvalue assignment. Next, a fuzzy logic system is constructed and then tuned to eliminate the nonlinear uncertainties as possibly as it can to enhance the tracking robustness. Finally, a minimax control scheme is specified to optimally attenuate the worst-case effect of both the residue due to fuzzy cancellation and external disturbance to achieve a minimax tracking performance. In addition, an adaptive fuzzy-based dynamic game theory is introduced to solve the minimax tracking problem. The proposed method is appropriate for the robust tracking design of robotic systems with large parameter perturbation and external disturbance. A simulation example of a two-link robotic manipulator driven by DC motors is also given to demonstrate the effectiveness of proposed design method´s tracking performance
Keywords :
control system synthesis; electric motors; fuzzy control; game theory; minimax techniques; model reference adaptive control systems; optimal control; robot dynamics; robust control; tracking; DC motors; adaptive fuzzy cancellation technique; eigenvalue assignment; external disturbance; fuzzy cancellation; fuzzy logic system; fuzzy-based dynamic game approach; linear nominal robotic control design; minimax control scheme; minimax controller; minimax tracking performance; model reference tracking; motor dynamics; nonlinear uncertainties; optimal attenuation; parameter perturbation; robust tracking control design; system uncertainties; tracking robustness; two-link robotic manipulator; worst-case effect; Adaptive control; Control design; DC motors; Fuzzy control; Minimax techniques; Programmable control; Robots; Robust control; Robustness; Uncertainty;
Journal_Title :
Fuzzy Systems, IEEE Transactions on