软体生长机器人可3D导航管道与洞穴,实现自主转向与定位。
3D Steering and Localization in Pipes and Burrows using an Externally Steered Soft Growing Robot
- 外部舵机控制生长方向,实现三自由度转向
- 可穿越半径2.5厘米的管道,最大转向角51.7度
- 适合在无GPS环境下进行3D定位,适用于野外探测
在隧道和管道等受限空间中导航与检测对现有机器人构成重大挑战,主要源于机动性不足和对复杂几何形状适应性差。藤蔓机器人(vine robots)是一种通过尖端软材料外翻持续生长的软体连续机器人,具有可进入狭小空间、适应复杂路径且摩擦小的优势。然而,现有设计难以在人工或自然通道中应对分支和急弯。本文提出一种专为管道和洞穴环境设计的可转向藤蔓机器人。该机器人采用简单管状结构,通过外部尖端支架实现三自由度转向,可通过改变生长方向或在管壁上支撑来调整路径。该方法实现了:(1) 3D空间中主动分支选择,最大可转向角51.7°;(2) 穿越半径最小达2.5厘米的管道网络;(3) 柔性尖端支持急弯通过;(4) 在无GPS环境下利用尖端传感器与连续体里程计实现实时3D定位。我们推导了前向运动学模型,量化了转向能力,并在三维管道系统及自然动物洞穴中验证了该系统性能。
原文摘要 · Abstract (English)
Navigation and inspection in confined environments, such as tunnels and pipes, pose significant challenges for existing robots due to limitations in maneuverability and adaptability to varying geometries. Vine robots, which are soft growing continuum robots that extend their length through soft material eversion at their tip, offer unique advantages due to their ability to navigate tight spaces, adapt to complex paths, and minimize friction. However, existing vine robot designs struggle with navigation in manmade and natural passageways, with branches and sharp 3D turns. In this letter, we introduce a steerable vine robot specifically designed for pipe and burrow environments. The robot features a simple tubular body and an external tip mount that steers the vine robot in three degrees of freedom by changing the growth direction and, when necessary, bracing against the wall of the pipe or burrow. Our external tip steering approach enables: (1) active branch selection in 3D space with a maximum steerable angle of 51.7°, (2) navigation of pipe networks with radii as small as 2.5 cm, (3) a compliant tip enabling navigation of sharp turns, and (4) real-time 3D localization in GPS-denied environments using tip-mounted sensors and continuum body odometry. We describe the forward kinematics, characterize steerability, and demonstrate the system in a 3D pipe system as well as a natural animal burrow.
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