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Conservativeness-reduced design of a gain scheduled H/sub ∞/ controller for a robotic manipulator

Zhongwei Yu, Huitang Chen, Peng-Yung Woo

Year
2003
Citations
7

Abstract

A conservativeness-reduced design of a gain scheduled output feedback H/sub /spl infin// controller for an n-joint rigid robotic manipulator, which integrates the varying-parameter rate without their feedback, is proposed. The robotic system is reduced to be a linear parameter varying (LPV) form, which depends affinely on the varying-parameter. The design of a controller, which satisfies the closed-loop H/sub /spl infin// performance, is reduced to be a solution of the parameterized linear matrix inequalities (LMIs) of parameter matrices. With a use of the concept of "multi-convexity", the solution of the infinite LMIs in the varying-parameter and its rate space is reduced to be a solution of the finite LMIs for the vertex set. The proposed controller eliminates the feedback of the varying-parameter rate and prescribes its upper boundary so that the conservativeness of the controller design is reduced. The experiment results verify the effectiveness of the proposed design.

Keywords

Control theory (sociology)Parameterized complexityController (irrigation)ConvexityParameter spaceRobot manipulatorOutput feedbackBoundary (topology)MathematicsSet (abstract data type)

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