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Robotics as a future and emerging technology: biomimetics, cybernetics, and neuro-robotics in European projects

机译:机器人技术是未来和新兴技术:欧洲项目中的仿生,控制论和神经机器人

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The evolution of the paradigm of modern biomechatronics and robotics can be seen in two main directions, standing as two extremities of a range of future biomechatronics systems: increasing the performance and miniaturization of the hardware platform and increasing the intelligence of the integrated system. Regarding the first direction, the current challenge is to develop sophisticated machines with a higher level of miniaturization and performance, as they can be inspired by insects. Towards the other extremity, there is research on intelligent and autonomous robots, like humanoids. At intermediate levels, one can envisage the development of machines with a good degree of sophistication and performance and with a moderate degree of intelligence and that are more prone to human supervision and control or even to integration with natural bodies as bionic components. In this article, three projects funded by the European Commission in the 5th Framework Programme, in the Information Society Technology-Future and Emerging Technologies (IST-FET) program, are presented as implementing three levels of this evolution of the biomechatronic paradigm: from the biomimetic wormlike microrobot for endoscopic exploration to a cybernetic hand prosthesis to an anthropomorphic robotic platform implementing learning schemes for sensory-motor coordination in manipulation.
机译:现代生物机电一体化和机器人技术范式的演变可以从两个主要方向看待,它们代表着一系列未来生物机电一体化系统的两​​个极端:提高硬件平台的性能和小型化,以及提高集成系统的智能性。关于第一个方向,当前的挑战是开发具有更高级别的小型化和高性能的复杂机器,因为它们可以受到昆虫的启发。在另一端,人们对诸如人形机器人之类的智能自主机器人进行了研究。在中等水平上,可以设想开发具有高度复杂性和性能以及中等程度智能的机器,并且这种机器更容易受到人类的监督和控制,甚至与作为仿生部件的自然物体融为一体。在本文中,提出了由欧盟委员会在第五框架计划中资助的三个项目,即信息社会技术,未来和新兴技术(IST-FET)计划中的三个项目,它们实现了生物机电一体化范式的这种演变的三个层次:仿生蠕虫状微型机器人,用于对控制论人工假体进行内窥镜检查,并在拟人化机器人平台上实施学习方案,以进行操纵中的感觉运动协调。

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