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Active touch sensing

机译:主动式触控

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摘要

Active sensing systems are purposive and information-seeking sensory systems. Active sensing usually entails sensor movement, but more fundamentally, it involves control of the sensor apparatus, in whatever manner best suits the task, so as to maximize information gain. In animals, active sensing is perhaps most evident in the modality of touch. In this theme issue, we look at active touch across a broad range of species from insects, terrestrial and marine mammals, through to humans. In addition to analysing natural touch, we also consider how engineering is beginning to exploit physical analogues of these biological systems so as to endow robots with rich tactile sensing capabilities. The different contributions show not only the varieties of active touch—antennae, whiskers and fingertips—but also their commonalities. They explore how active touch sensing has evolved in different animal lineages, how it serves to provide rapid and reliable cues for controlling ongoing behaviour, and even how it can disintegrate when our brains begin to fail. They demonstrate that research on active touch offers a means both to understand this essential and primary sensory modality, and to investigate how animals, including man, combine movement with sensing so as to make sense of, and act effectively in, the world.
机译:主动感测系统是有目的且寻求信息的感官系统。主动感测通常需要传感器移动,但是从根本上讲,它涉及以最适合任务的任何方式控制传感器设备,从而最大化信息增益。在动物中,主动感应可能在触摸方式中最为明显。在本主题杂志中,我们着眼于从昆虫,陆地和海洋哺乳动物到人类的广泛物种的活跃联系。除了分析自然触觉之外,我们还考虑了工程技术如何开始利用这些生物系统的物理类似物,从而赋予机器人丰富的触觉感应功能。不同的贡献不仅显示了有源触摸的种类(天线,胡须和指尖),而且还显示了它们的共性。他们探索了主动式触摸感应在不同动物谱系中的演变方式,如何为控制正在进行的行为提供快速而可靠的线索,以及当我们的大脑开始衰竭时如何分解。他们证明,对主动触摸的研究不仅提供了一种手段,以了解这种基本的和主要的感觉方式,而且还研究了动物(包括人)如何将运动与感官结合起来,从而对世界有所了解并在世界上有效地行动。

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