DocumentCode :
1184713
Title :
Design Optimization of a Bidirectional Microswimming Robot Using Giant Magnetostrictive Thin Films
Author :
Zhang, Yongshun ; Cong, Ming ; Guo, Dongming ; Wang, Dianlong
Author_Institution :
Key Lab. for Precision & Non-traditional Machining of the Minist. of Educ., Dalian Univ. of Technol., Dalian, China
Volume :
14
Issue :
4
fYear :
2009
Firstpage :
493
Lastpage :
503
Abstract :
This paper presents a bidirectional optimization method on a wireless microswimming robot. The robot is developed based on fin beating propulsion employing two giant magnetostrictive thin films for left and right fins. An innovative drive approach, using separate second-stage resonance frequencies of the left and right fins to generate right and left thrusts, is proposed and implemented on a bidirectional microswimming robot prototype. Dynamic model of the proposed microrobot has been derived based on theoretical analysis. A discrete variate method for optimizing left fin configuration is proposed under the constraints of fixed surface area and sufficient fin end strength, and a genetic algorithms method for optimizing right fin configuration is employed under constraints of symmetry and linearity of bidirectional swimming. Simulation and experimental results have demonstrated that bidirectional swimming performance of the robot is greatly improved with low driving frequency and a large range of swimming speed in both directions.
Keywords :
genetic algorithms; giant magnetoresistance; magnetic thin films; microrobots; mobile robots; robot dynamics; bidirectional microswimming robot; bidirectional optimization; discrete variate method; dynamic model; fin beating propulsion; genetic algorithm; giant magnetostrictive thin film; resonance frequency; wireless microswimming robot; Design optimization; giant magnetostrictive thin films (GMFs); microswimming robot; mode shape; resonance frequency;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2009.2012851
Filename :
4797871
Link To Document :
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