DocumentCode :
677358
Title :
Underwater performance evaluation of an amphibious spherical mother robot
Author :
Shuxiang Guo ; Maoxun Li ; Chunfeng Yue
Author_Institution :
Tianjin Univ. of Technol., Tianjin, China
fYear :
2013
fDate :
26-28 Aug. 2013
Firstpage :
1039
Lastpage :
1044
Abstract :
Various underwater microrobots were applied widely to underwater operations in narrow spaces in recent years. By having the compact structure, the robots had some limitations in locomotion velocity and enduring time. Hence, a mother-son robot cooperation system was proposed to solve these limitations. A novel amphibious spherical robot was designed as the mother robot to carry the microrobots as son robots for collaboration. The spherical mother robot consisted of a sealed hemispheroid, two openable quarter spherical shells, a plastic circular plate, a plastic shelf for carrying microrobots and four actuating units. Each unit was composed of a water jet propeller and two servo motors, each of which could rotate 90° in horizontal or vertical direction respectively. The robot could implement on-land locomotion, as well as underwater locomotion. In this paper, we developed the prototype mother robot and did the force analysis of the actuating system in horizontal direction and vertical direction. And plenty of underwater experiments of the robot in the semi-submerged state were conducted to evaluate the underwater performance, including the moving forward experiments in the moving forward experiments of the robot actuated by two main actuating units and four actuating units. From the results of the underwater experiments, we got a maximal moving forward velocity of 13.7 cm/s under the efficient actuating and a maximal rotating velocity of 64.3°/s under a duty of 100%.
Keywords :
autonomous underwater vehicles; legged locomotion; microrobots; position control; servomotors; amphibious spherical mother robot; force analysis; locomotion velocity; maximal rotating velocity; mother-son robot cooperation system; on-land locomotion; openable quarter spherical shell; plastic circular plate; plastic shelf; sealed hemispheroid; servo motor; underwater locomotion; underwater microrobot; underwater performance evaluation; water jet propeller; Equations; Force; Mathematical model; Propellers; Pulse width modulation; Robots; Servomotors; Amphibious robot; Mother robot; Spherical robot; Water-jet propeller;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information and Automation (ICIA), 2013 IEEE International Conference on
Conference_Location :
Yinchuan
Type :
conf
DOI :
10.1109/ICInfA.2013.6720448
Filename :
6720448
Link To Document :
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