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Passive periodic motions of multi-joint robots by stiffness adaptation and DFC for energy saving

Mitsunori Uemura, Guangqiang Lu, Sadao Kawamura, Shugen Ma

Year
2008
Citations
12

Abstract

This paper presents a new energy saving control method for multi-joint robots to generate passive. periodic motions, which require less actuator torque. Generally, if we do not use actuator torque, multi-joint robots with elastic elements will generate chaotic motion due to nonlinearity of multi-joint-robot dynamics. To solve this problem; stiffness adaptation and DFC are simultaneously used in our study. The proposed controller works without using parameters of the controlled systems, Numerical simulations demonstrate its effectiveness.

Keywords

Control theory (sociology)RobotActuatorTorqueStiffnessComputer scienceJoint stiffnessJoint (building)Energy (signal processing)Nonlinear system

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