DocumentCode :
250301
Title :
Energy-efficient propulsion inspired by whirligig beetles
Author :
Xinghua Jia ; Zongyao Chen ; Riedel, Andrew ; Hamel, W.R. ; Mingjun Zhang
Author_Institution :
Dept. of Mech., Aerosp. & Biomed. Eng., Univ. of Tennessee, Knoxville, TN, USA
fYear :
2014
fDate :
May 31 2014-June 7 2014
Firstpage :
2463
Lastpage :
2468
Abstract :
Whirligig beetle, claimed in the literature to be one of the highest measured for a thrust-generating apparatus within the animal kingdom, has evolved a series of propulsion strategies that may serve as a source of inspiration for designing highly efficient propulsive systems. First, a robotic platform was developed to test an energy-efficient propulsion mechanism inspired by the whirligig beetle. Second, a mathematical model for the robot was proposed to account for the fluid dynamics generated by the robotic swimming. Third, an optimal problem was formulated and solved for the propulsor and beating pattern design. The results indicated that soft middle, stiff end propulsor, and alternating, asymmetrical beating pattern will improve the propulsion efficiency for a swimming robot with four propulsors. Finally, simulation and experiments were conducted to further analyze the effect of beating pattern to the robotic propulsion efficiency. It was found that the oscillated body movement and S-shaped trajectory introduced by the optimal beating pattern would improve the propulsion efficiency for the designed robot.
Keywords :
control system synthesis; fluid dynamics; marine control; mathematical analysis; mobile robots; animal kingdom; beating pattern design; energy-efficient propulsion; fluid dynamics; mathematical model; propulsor; robotic platform; robotic swimming; thrust-generating apparatus; whirligig beetles; Energy efficiency; Fluids; Force; Optimization; Propulsion; Robot kinematics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Robotics and Automation (ICRA), 2014 IEEE International Conference on
Conference_Location :
Hong Kong
Type :
conf
DOI :
10.1109/ICRA.2014.6907202
Filename :
6907202
Link To Document :
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