DocumentCode
3177523
Title
Development of a Rajiform Swimming Robot using Ionic Polymer Artificial Muscles
Author
Takagi, Kentaro ; Yamamura, Masanori ; Luo, Zhi Wei ; Onishi, Masaki ; Hirano, Shinya ; Asaka, Kinji ; Hayakawa, Yoshikazu
Author_Institution
Bio-Mimetic Control Res. Center, RIKEN, Nagoya
fYear
2006
fDate
Oct. 2006
Firstpage
1861
Lastpage
1866
Abstract
Ionic polymer-metal composite (IPMC), which is one of the electro-active polymer actuators, is expected as artificial muscles for robots. An interesting property of IPMC is that it requires water to work, therefore it is suitable for underwater robots. In this paper, we developed an underwater robot which mimics rajiform swimming, that is the swimming form of a ray fish. Fins are designed using sixteen IPMCs. For autonomous operation, miniaturization of the electrical devices such as a micro controllers and small amplifiers are performed. A simple traveling wave control input is employed to generate moment on the fin. In the experiment, propulsion speed is measured under various control parameters. Furthermore, incremental wave of the fin is observed although the amplitude of the control input is spatially uniform. We also discuss this phenomenon from the point of view of interaction between elasticity of the actuator and fluid dynamics
Keywords
composite materials; microcontrollers; mobile robots; polymers; remotely operated vehicles; underwater vehicles; electro-active polymer actuators; fluid dynamics; ionic polymer artificial muscles; ionic polymer-metal composite; micro controllers; rajiform swimming robot; ray fish; traveling wave control input; underwater robots; Actuators; Elasticity; Marine animals; Muscles; Operational amplifiers; Polymers; Propulsion; Robots; Velocity measurement; Water;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Robots and Systems, 2006 IEEE/RSJ International Conference on
Conference_Location
Beijing
Print_ISBN
1-4244-0259-X
Electronic_ISBN
1-4244-0259-X
Type
conf
DOI
10.1109/IROS.2006.282308
Filename
4058650
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