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New tuning conditions for a class of nonlinear PID global regulators of robot manipulators

Jorge Alberto Orrante-Sakanassi, Víctor Santibáñez, Victor Manuel Hernández-Guzmán

发表年份
2013
引用次数
13

摘要

AbstractSeveral nonlinear proportional-integral-derivative (PID) controllers for robot manipulators that ensure global asymptotic stability have been proposed in the literature. However, the tuning criteria obtained are expressed in terms of conditions so restrictive that they have avoided, until now, carrying out experimental tests with such controllers. Tuning criteria of some PID controllers for robot manipulators with conditions more relaxed than those presented previously in the literature have been proposed in two recent works by the authors. This was achieved by setting the tuning conditions individually for each joint instead of general conditions for the whole robot. In this paper we extend these results to a class of nonlinear PID global regulators for robot manipulators. The obtained tuning criteria are given in terms of conditions so relaxed that they have allowed to carry out, for the first time, experimental essays with these controllers. Such experiments are presented in this paper using a two-degrees-of-freedom robot manipulator.Keywords: robot manipulatorsnonlinear PID controlglobal stabilitytuning conditions Additional informationFundingThis research was partially supported by General Directorate of Technological Superior Education (DGEST) and National Council of Science and Technology (CONACyT) [grant number 134534].

关键词

PID controllerControl theory (sociology)Nonlinear systemRobotControl engineeringStability (learning theory)Robot manipulatorClass (philosophy)Computer scienceEngineering

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