无需电子元件的折纸机器人用四相振荡系统实现协调爬行
Quadrature Oscillation System for Coordinated Motion in Crawling Origami Robot
- 设计四相正交方波振荡器,生成互差90度的四个控制信号
- 用该系统驱动折纸机器人实现四肢协调运动,完成自主爬行
- 适合追求极端环境应用的无电子元件机器人研究者
受折纸启发的机器人具有快速、低成本的设计与制造优势,尤其在高辐射或强磁场等极端环境中,无传统电子元件的折纸机器人更具实用性。然而,缺乏复杂控制系统使其仅能执行简单自主行为。此前我们开发了可打印、无电子元件且自供能的振荡器,可产生简单的互补方波信号。本文提出一种四相振荡系统,可生成四个相位相差四分之一周期(90°)的方波信号,从而实现四种不同状态。这类控制信号在生物仿生机器人中对协调肢体运动至关重要。我们通过设计并构建一个基于该振荡系统的折纸爬行机器人,验证了其实际效用。结果表明,该振荡器与机器人共同展示了折纸机器人实现更复杂控制与功能的潜力,为未来无电子元件、快速设计的先进自主折纸机器人铺平道路。
原文摘要 · Abstract (English)
Origami-inspired robots offer rapid, accessible design and manufacture with diverse functionalities. In particular, origami robots without conventional electronics have the unique advantage of functioning in extreme environments such as ones with high radiation or large magnetic fields. However, the absence of sophisticated control systems limits these robots to simple autonomous behaviors. In our previous studies, we developed a printable, electronics-free, and self-sustained oscillator that generates simple complementary square-wave signals. Our study presents a quadrature oscillation system capable of generating four square-wave signals a quarter-cycle out of phase, enabling four distinct states. Such control signals are important in various engineering and robotics applications, such as orchestrating limb movements in bio-inspired robots. We demonstrate the practicality and value of this oscillation system by designing and constructing an origami crawling robot that utilizes the quadrature oscillator to achieve coordinated locomotion. Together, the oscillator and robot illustrate the potential for more complex control and functions in origami robotics, paving the way for more electronics-free, rapid-design origami robots with advanced autonomous behaviors.
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