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Enhanced robotic body extension with modular units

机译:带有模块化单元的增强型机器人车身扩展

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The adaptation of robots to changing tasks has been explored in modular self-reconfigurable robot research, where the robot structure is altered by adapting the connectivity of its constituent modules. As these modules are generally complex and large, an upper bound is imposed on the resolution of the built structures. Inspired by growth of plants or animals, robotic body extension (RBE) based on hot melt adhesives allows a robot to additively fabricate and assemble tools, and integrate them into its own body. This enables the robot to achieve tasks which it could not achieve otherwise. The RBE tools are constructed from hot melt adhesives and therefore generally small and only passive. In this paper, we seek to show physical extension of a robotic system in the order of magnitude of the robot, with actuation of integrated body parts, while maintaining the ability of RBE to construct parts with high resolution. Therefore, we present an enhancement of RBE based on hot melt adhesives with modular units, combining the flexibility of RBE with the advantages of simple modular units. We explain the concept of this new approach and demonstrate with two simple unit types, one fully passive and the other containing a single motor, how the physical range of a robot arm can be extended and additional actuation can be added to the robot body.
机译:在模块化的可自我重新配置的机器人研究中已经探索了使机器人适应不断变化的任务的方法,该研究通过调整其组成模块的连接性来改变机器人的结构。由于这些模块通常很复杂且很大,因此对构建结构的分辨率施加了上限。受植物或动物生长的启发,基于热熔胶的机器人车身扩展(RBE)使机器人可以增材制造和组装工具,并将其集成到自己的身体中。这使机器人能够完成原本无法完成的任务。 RBE工具由热熔胶制成,因此通常很小,只有被动的。在本文中,我们力求在保持RBE构造高分辨率零件的能力的同时,显示出机器人系统在物理上的扩展程度(以机器人的数量级为单位),并激活了集成的身体部位。因此,我们提出了基于热熔胶与模块化单元的RBE的改进,将RBE的灵活性与简单模块化单元的优势相结合。我们将解释这种新方法的概念,并通过两种简单的单元类型(一种完全无源,另一种包含单个电动机)进行演示,说明如何扩展机械臂的物理范围以及如何将附加驱动力添加到机器人主体。

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