Title :
Entrainment property analysis of Van der Pol oscillator driving a spring-mass system for large force generation by averaging method
Author_Institution :
Dept. of Syst. Design & Inf., Kyushu Inst. of Technol., Iizuka, Japan
Abstract :
This paper presents a mathematical proof of the entrainment property of Van der Pol (VDP) oscillator driving a spring-mass system for large force generation. The entrainment property enables the mechanical system to generate a large force despite smaller amount of driving torques. Although it has been already confirmed by simulations using a manipulator model that a method with the VDP oscillator is effective in efficient large force generation, any mathematical proof that supports the simulation results has not been provided yet. In this paper, using an averaging method, which is a technique for nonlinear system analysis, we derive an approximated model of a spring-mass system driven by the VDP oscillator, and then prove the entrainment property of the VDP oscillator that realizes efficient large force generation based on the model.
Keywords :
manipulator dynamics; relaxation oscillators; springs (mechanical); torque; Van der Pol oscillator; averaging method; entrainment property analysis; force generation; manipulator model; mathematical proof; mechanical system; nonlinear system analysis; spring-mass system; torque driving; Actuators; Character generation; Manipulators; Mathematical analysis; Mathematical model; Mechanical systems; Oscillators; Robots; Signal generators; System analysis and design; Averaging method; Entrainment; Large force generation; Oscillatory motion; Van der Pol oscillator;
Conference_Titel :
Robotics Automation and Mechatronics (RAM), 2010 IEEE Conference on
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-6503-3
DOI :
10.1109/RAMECH.2010.5513142