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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Soft eSkin: distributed touch sensing with harmonized energy and computing Mahesh Soni and Ravinder Dahiya
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Soft eSkin: distributed touch sensing with harmonized energy and computing Mahesh Soni and Ravinder Dahiya

机译:软电子产品:分布式触摸感应与协调能量和计算Mahesh Soni和Ravinder Dahiya

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摘要

Inspired by biology, significant advances have been made in the field of electronic skin (eSkin) or tactile skin. Many of these advances have come through mimicking the morphology of human skin and by distributing few touch sensors in an area. However, the complexity of human skin goes beyond mimicking few morphological features or using few sensors. For example, embedded computing (e.g. processing of tactile data at the point of contact) is centric to the human skin as some neuroscience studies show. Likewise, distributed cell or molecular energy is a key feature of human skin. The eSkin with such features, along with distributed and embedded sensors/electronics on soft substrates, is an interesting topic to explore. These features also make eSkin significantly different from conventional computing. For example, unlike conventional centralized computing enabled by miniaturized chips, the eSkin could be seen as a flexible and wearable large area computer with distributed sensors and harmonized energy. This paper discusses these advanced features in eSkin, particularly the distributed sensing harmoniously integrated with energy harvesters, storage devices and distributed computing to read and locally process the tactile sensory data. Rapid advances in neuromorphic hardware, flexible energy generation, energy-conscious electronics, flexible and printed electronics are also discussed. This article is part of the theme issue 'Harmonizing energy-autonomous computing and intelligence'.
机译:通过生物学启发,在电子皮肤(Eskin)或触觉皮肤领域已经进行了重大进展。这些进步中的许多进展通过模仿人体皮肤的形态,并通过在一个地区分布少量触摸传感器。然而,人体皮肤的复杂性超出了少数形态特征或使用少数传感器。例如,嵌入式计算(例如,在接触点处的触觉数据处理)是以一些神经科学研究表演的人体皮肤为中心。同样地,分布式细胞或分子能是人皮肤的关键特征。具有此类功能的Eskin以及软基板上的分布式和嵌入式传感器/电子设备,是探索的一个有趣的话题。这些特征还使Eskin显着与传统计算不同。例如,与由小型化芯片启用的传统集中计算不同,ESKIN可以被视为具有分布式传感器和协调能量的柔性且可穿戴的大面积计算机。本文讨论了ESKIN中的这些高级功能,特别是与能量收割机,存储设备和分布式计算和分布式计算的分布式感测,以读取和本地处理触觉感官数据。还讨论了神经形态硬件,灵活的能量发电,能量出现的电子,柔性和印刷电子产品的快速进展。本文是主题问题“协调能源自主计算和智能”的一部分。

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