DocumentCode
3026517
Title
Surface tension driven water strider robot using circular footpads
Author
Ozcan, Onur ; Wang, Han ; Taylor, Jonathan D. ; Sitti, Metin
Author_Institution
Dept. of Mech. Eng., Carnegie Mellon Univ., Pittsburgh, PA, USA
fYear
2010
fDate
3-7 May 2010
Firstpage
3799
Lastpage
3804
Abstract
Water strider insects have attracted many researchers´ attention with their power efficient and agile water surface locomotion. This study proposes a new water strider insect inspired robot, called STRIDE II, which uses new circular footpads for high lift, stability, payload capability, and a new elliptical leg rotation mechanism for more efficient water surface propulsion. The lift, drag and propulsion forces and the energy efficiency of this robot are modeled and experiments are conducted to verify these models. A maximum lift capacity of 53 grams is achieved with a total of 12 footpads, each 4.2 cm in diameter for a robot weighing 21.75 grams. For this robot, a propulsion efficiency of 22.3% is measured. Maximum forward and turning speeds of the robot are measured as 71.5 mm/sec and 0.21 rad/sec, respectively. These water strider robots could be used in water surface monitoring, cleaning, and analysis in lakes, dams, rivers and sea.
Keywords
mobile robots; STRIDE II; agile water surface locomotion; circular footpads; elliptical leg rotation mechanism; surface tension driven water strider robot; turning speeds; water strider insects; water surface monitoring; water surface propulsion; Insects; Leg; Legged locomotion; Payloads; Propulsion; Robots; Sea measurements; Sea surface; Stability; Surface tension; Biologically Inspired Robots; Miniature Robots; Mobile Robotics; Surface Tension;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation (ICRA), 2010 IEEE International Conference on
Conference_Location
Anchorage, AK
ISSN
1050-4729
Print_ISBN
978-1-4244-5038-1
Electronic_ISBN
1050-4729
Type
conf
DOI
10.1109/ROBOT.2010.5509843
Filename
5509843
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