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Development and Motion Testing of a Robotic Ray

机译:机器人射线的开发和运动测试

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摘要

Biomimetics takes nature as a model for inspiration to immensely help abstract new principles and ideas to develop various devices for real applications. In order to improve the stability and maneuvering of biomimetic fish like underwater propulsors, we selected bluespotted ray that propel themselves by taking advantage of their pectoral fins as target. First, a biomimetic robotic undulating fin driven propulsor was built based on the simplified pectoral structure of living bluespotted ray. The mechanical structure and control circuit were then presented. The fin undulating motion patterns, fin ray angle, and fin shape to be investigated are briefly introduced. Later, the kinematic analysis of fin ray and the whole fin is discussed. The influence of various kinematic parameters and morphological parameters on the average propulsion velocity of the propulsor was analyzed. Finally, we conclude mat the average propulsion velocity generally increases with the increase of kinematic parameters such as frequency, amplitude, and wavelength, respectively. Moreover, it also has a certain relationship with fin undulating motion patterns, fin ray angle, fin shape, and fin aspect ratio.
机译:仿生仿制品以自然为灵感模型,可以极大地帮助抽象新原理和新思想,从而开发出可用于实际应用的各种设备。为了提高仿生鱼类(如水下推进器)的稳定性和机动性,我们选择了蓝点射线,它们利用它们的胸鳍作为目标来推动自身。首先,基于活体蓝点射线的简化胸腔结构,构建了仿生机器人起伏鳍驱动的推进器。然后介绍了机械结构和控制电路。简要介绍了要研究的鳍片起伏运动模式,鳍片射线角度和鳍片形状。随后,讨论了鳍片和整个鳍片的运动学分析。分析了各种运动学参数和形态学参数对推进器平均推进速度的影响。最后,我们得出结论,平均推进速度通常随运动学参数(例如频率,幅度和波长)的增加而增加。而且,它还与鳍片起伏运动模式,鳍片射线角度,鳍片形状和鳍片纵横比具有一定关系。

著录项

  • 来源
    《Journal of robotics》 |2015年第2015期|791865.1-791865.13|共13页
  • 作者

    Jianhui He; Yonghua Zhang;

  • 作者单位

    Department of Mechatronics Engineering, Taizhou Vocational & Technical College, Taizhou 318000, China;

    Department of Mechatronics Engineering, Taizhou Vocational & Technical College, Taizhou 318000, China;

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  • 正文语种 eng
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