用光电子场驱动微机器人,无接触操控微物体。
Non-contact Dexterous Micromanipulation with Multiple Optoelectronic Robots
- 利用光电子场产生斥力驱动微机器人
- 实现在杂乱环境中的无接触轨迹跟踪与避障
- 适合多机器人协同、无需专用夹具的微操作
微操纵系统通过自动化与机器人技术提升微尺度任务的精度、可重复性和效率。然而,现有方法通常局限于特定物体或任务,需定制工具和专用抓取方式。本文提出一种基于光电技术的新型非接触式微操纵方法:利用光电子场中产生的排斥性介电泳力驱动微机器人,在不接触目标物体的情况下推动其运动,适用于复杂环境。该非接触特性可显著降低损伤、污染或粘附风险,大幅提升操作灵活性,并实现通用工具间接操控,无需专用工具。通过一系列仿真与真实实验验证了该方法性能,包括非接触轨迹追踪、障碍物避让及多个微机器人间的相互避让。所提方案为微尺度多种物体与任务提供了通用且灵巧的解决方案。
原文摘要 · Abstract (English)
Micromanipulation systems leverage automation and robotic technologies to improve the precision, repeatability, and efficiency of various tasks at the microscale. However, current approaches are typically limited to specific objects or tasks, which necessitates the use of custom tools and specialized grasping methods. This paper proposes a novel non-contact micromanipulation method based on optoelectronic technologies. The proposed method utilizes repulsive dielectrophoretic forces generated in the optoelectronic field to drive a microrobot, enabling the microrobot to push the target object in a cluttered environment without physical contact. The non-contact feature can minimize the risks of potential damage, contamination, or adhesion while largely improving the flexibility of manipulation. The feature enables the use of a general tool for indirect object manipulation, eliminating the need for specialized tools. A series of simulation studies and real-world experiments -- including non-contact trajectory tracking, obstacle avoidance, and reciprocal avoidance between multiple microrobots -- are conducted to validate the performance of the proposed method. The proposed formulation provides a general and dexterous solution for a range of objects and tasks at the micro scale.
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