群体行为
机器人
计算机科学
适应性
镜像
机制(生物学)
分布式计算
模式(计算机接口)
仿生学
群机器人
人机交互
适应(眼睛)
人工智能
控制工程
生态学
工程类
生物
物理
神经科学
沟通
量子力学
社会学
作者
Da Zhao,Haobo Luo,Yuxiao Tu,Chongxi Meng,Tin Lun Lam
标识
DOI:10.1038/s41467-024-47788-2
摘要
Abstract Terrestrial self-reconfigurable robot swarms offer adaptable solutions for various tasks. However, most existing swarms are limited to controlled indoor settings, and often compromise stability due to their freeform connections. To address these issues, we present a snail robotic swarm system inspired by land snails, tailored for unstructured environments. Our system also employs a two-mode connection mechanism, drawing from the adhesive capabilities of land snails. The free mode, mirroring a snail’s natural locomotion, leverages magnet-embedded tracks for freeform mobility, thereby enhancing adaptability and efficiency. The strong mode, analogous to a snail’s response to disturbance, employs a vacuum sucker with directional polymer stalks for robust adhesion. By assigning specific functions to each mode, our system achieves a balance between mobility and secure connections. Outdoor experiments demonstrate the capabilities of individual robots and the exceptional synergy within the swarm. This research advances the real-world applications of terrestrial robotic swarms in unstructured environments.
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