自适应结构和仿生机器人-展望

A. Concilio, I. Dimino, S. Ameduri, R. Pecor
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引用次数: 0

摘要

本文概述了最近一些变形装置的全尺寸演示,这些变形装置能够为一般系统提供创新能力,在操作过程中改变形状并显著提高性能。在航空领域,在过去几年中已经观察到巨大的进步,这意味着这项技术正在迅速从实验室规模过渡到高TRL演示。最先进的概念已经被证明能够承受最小变形的载荷,同时能够改变其几何形状,以获得相对于其原始任务的额外好处。同样,机器人技术已成为本世纪最突出的技术趋势之一。它们的使用和开发的迅速增加,逐渐取代了大量的人类工作,极大地改变了我们的社会。随着自动化、工程、人工智能和机器学习领域的技术进步的融合,这种进化也在迅速加速。由于这两个领域都涉及执行器、传感器和控制器的集成,并且在恶劣环境中面临完整性挑战,因此它们可能在某种程度上相互关联,并可能共享一个共同的未来。在这篇文章中,作者提出了一个可能的未来场景的原始观点,可能会考虑自适应结构和机器人研究的独特发展路径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Structures and Biomimetic Robots – A Perspective
This paper gives an overview of some recent full-scale demonstrations of morphing devices capable of providing innovative capabilities to general systems in changing shape and improving performance significantly during operations. In aeronautics, large progress has been observed over the last few years, meaning that this technology is rapidly transitioning from laboratory scale to high TRL demonstrators. The most advanced concepts already proved to withstand loads with minimal deformation while having the capability to change their geometry to attain additional benefits with respect to their original mission. In the same way, robotics has become one of the most prominent technological trends of the current century. The rapid increase in their use and development has significantly changed our society by gradually replacing a large share of human jobs. Such an evolution is also rapidly accelerating, as technological advances in automation, engineering, artificial intelligence, and machine learning converge. Since both domains involve the integration of actuators, sensors and controllers and face integrity challenges in harsh environments, they may be seen somehow related and probably share a common future. In this article, the authors propose an original view of a possible future scenario that is likely to consider a unique development path for research on adaptive structures and robotics.
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