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能够实现感知与运动一体化的光驱动薄型机器人

Somatosensory, Light-Driven, Thin-Film Robots Capable of Integrated Perception and Motility.

机构信息

Department of Electrical and Computer Engineering, National University of Singapore, 4 Engineering Drive 3, Singapore, 117583, Singapore.

Institute of Materials Research and Engineering, A*STAR (Agency for Science, Technology, and Research), 3 Research Link, Singapore, 117602, Singapore.

出版信息

Adv Mater. 2020 May;32(21):e2000351. doi: 10.1002/adma.202000351. Epub 2020 Apr 13.

Abstract

Living organisms are capable of sensing and responding to their environment through reflex-driven pathways. The grand challenge for mimicking such natural intelligence in miniature robots lies in achieving highly integrated body functionality, actuation, and sensing mechanisms. Here, somatosensory light-driven robots (SLiRs) based on a smart thin-film composite tightly integrating actuation and multisensing are presented. The SLiR subsumes pyro/piezoelectric responses and piezoresistive strain sensation under a photoactuator transducer, enabling simultaneous yet non-interfering perception of its body temperature and actuation deformation states. The compact thin film, when combined with kirigami, facilitates rapid customization of low-profile structures for morphable, mobile, and multiple robotic functionality. For example, an SLiR walker can move forward on different surfaces, while providing feedback on its detailed locomotive gaits and subtle terrain textures, and an SLiR anthropomorphic hand shows bodily senses arising from concerted mechanoreception, thermoreception, proprioception, and photoreception. Untethered operation with an SLiR centipede is also demonstrated, which can execute distinct, localized body functions from directional motility, multisensing, to wireless human and environment interactions. This SLiR, which is capable of integrated perception and motility, offers new opportunities for developing diverse intelligent behaviors in soft robots.

摘要

生物体能够通过反射驱动途径感知和响应其环境。在微型机器人中模拟这种自然智能的巨大挑战在于实现高度集成的身体功能、驱动和传感机制。在这里,提出了一种基于智能薄膜复合材料的光驱动机器人(SLiR),该复合材料紧密集成了驱动和多传感功能。SLiR 将热释电/压电响应和压阻应变感知纳入光致动器换能器中,从而能够同时感知其体温和驱动变形状态,而不会相互干扰。这种紧凑的薄膜与折纸相结合,便于快速定制低轮廓结构,以实现可变形、移动和多种机器人功能。例如,SLiR 步行者可以在不同的表面上前进,同时提供其详细的运动步态和微妙的地形纹理的反馈,而 SLiR 拟人手则展示了协同机械感知、温度感知、本体感知和光感知产生的身体感知。还展示了无绳 SLiR 蜈蚣的操作,它可以从定向运动、多传感到无线人机交互执行独特的局部身体功能。这种能够进行集成感知和运动的 SLiR 为开发软机器人的各种智能行为提供了新的机会。

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