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A Study on the Propulsive Mechanism of a Double Jointed Fish Robot Utilizing Self-Excitation Control

Motomu NAKASHIMA, Norifumi Ohgishi, Kyosuke Ono

Year
2003
Citations
49
Access
Open access

Abstract

This paper describes a numerical and experimental study of a double jointed fish robot utilizing self-excitation control. The fish robot is composed of a streamlined body and a rectangular caudal fin. The body length is 280mm and it has a DC motor to actuate its first joint and a potentiometer to detect the angle of its second joint. The signal from the potentiometer is fed back into the DC motor, so that the system can be self-excited. In order to obtain a stable oscillation and a resultant stable propulsion, a torque limiter circuit is employed. From the experiment, it has been found that the robot can stably propel using this control and the maximum propulsive speed is 0.42m/s.

Keywords

Mechanism (biology)Fish <Actinopterygii>ExcitationControl (management)RobotControl theory (sociology)Computer sciencePhysicsEngineeringArtificial intelligence

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