arXiv:2411.07588cs.RO2024-11

用气压振荡器实现无需外部控制的高速柔性机器人运动

A High-frequency, Interaction-induced Pneumatic Oscillator Enabling Versatile Soft Robotics

  • 通过碰撞触发相位重置实现自振荡,利用材料自身特性
  • 最高振荡频率达20 Hz,最快爬行速度达50.27 cm/s
  • 适合追求高速、无外接部件的柔性机器人研发

柔性机器人虽能通过多种驱动方式适应复杂环境,但受限于材料本征特性,难以同时实现快速响应与大范围运动,制约了其绝对速度与整体效率。本文提出一种高频气压振荡器(HIPO),通过碰撞诱导的相位重置机制,利用事件触发的非线性特性,使气动执行器自发产生周期性控制信号,直接输出运动响应,无需外部驱动组件。该系统高效将气流内能转化为机器人动能,最高频率达20 Hz。我们展示了其多功能性:仿昆虫快速爬行机器人(最高速度50.27 cm/s)、高频蝴蝶形翼拍器及灵活鸭形泳动器。通过融合信号生成、能量转换与运动输出,HIPO实现了快速高效的运动,为高性能柔性机器人开辟新路径。

原文摘要 · Abstract (English)

Soft robots, while highly adaptable to diverse environments through various actuation methods, still face significant performance boundary due to the inherent properties of materials. These limitations manifest in the challenge of guaranteeing rapid response and large-scale movements simultaneously, ultimately restricting the robots' absolute speed and overall efficiency. In this paper, we introduce a high-frequency pneumatic oscillator (HIPO) to overcome these challenges. Through a collision-induced phase resetting mechanism, our HIPO leverages event-based nonlinearity to trigger self-oscillation of pneumatic actuator, which positively utilizes intrinsic characteristics of materials. This enables the system to spontaneously generate periodic control signals and directly produce motion responses, eliminating the need for incorporating external actuation components. By efficiently and rapidly converting internal energy of airflow into the kinetic energy of robots, HIPO achieves a frequency of up to 20 Hz. Furthermore, we demonstrate the versatility and high-performance capabilities of HIPO through bio-inspired robots: an insect-like fast-crawler (with speeds up to 50.27 cm/s), a high-frequency butterfly-like wing-flapper, and a maneuverable duck-like swimmer. By eliminating external components and seamlessly fusing signal generation, energy conversion, and motion output, HIPO unleashes rapid and efficient motion, unlocking potential for high-performance soft robotics.

柔性机器人气动驱动自振荡高速运动

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