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Nonlinear H/sub ∞/ control of robotic manipulator

Jongguk Yim, Jong Hyeon Park

Year
2003
Citations
2

Abstract

H/sub /spl infin// control theory for nonlinear systems has been developed, which is based on the concept of energy dissipation. A nonlinear H/sub /spl infin// controller using energy dissipation is designed in the sense of L/sub 2/-gain attenuation from a disturbance to performance and it is essential to find the solution of the Hamilton Jacobi (HJ) equation (or inequality) for application. However, it is difficult to obtain its solution in general. In this paper, the robot dynamics is transformed to a affine form to express the HJ inequality as a more tractable form, i.e., a nonlinear matrix inequality (NLMI), and its approximated solution is obtained from the fact that the terms in matrices which describe robot manipulator can be bounded.

Keywords

Nonlinear systemControl theory (sociology)DissipationBounded functionController (irrigation)RobotMathematicsAffine transformationRobust controlEnergy (signal processing)

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