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Sensate media — multimodal electronic skins as dense sensor networks

机译:敏感媒体-多模式电子皮肤作为密集的传感器网络

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In this paper, we introduce the concept of building electronic sensate skins as extremely dense, multimodal, systolic sensor networks. In this fashion, the copious signals produced by the skin's receptors are reduced by the network itself, and only high-level features are routed out peer-to-peer, avoiding complex wiring requirements while promising to enable scalability across large areas. Our architectures and algorithms have been inspired by biological skin, where signals from receptors are enhanced or suppressed by processing in the receptor cells and nervous system before arriving at the brain. We illustrate this concept with work in progress on two test beds, the Pushpin Computer, an easily configurable, planar array of over 100 nodes set up as 'smart wallpaper', and the Tribble, a sphere coated with over 500 diverse tactile and noncontact sensor channels processed in 32 interconnected sensor 'cells'. We also introduce the Z-Tiles, a collaborative project that has resulted in a pressure-imaging floor realised through a collection of pixilated floor tiles configured as a mesh sensor network We conclude with a technology roadmap for scaling to higher densities.
机译:在本文中,我们介绍了将电子传感器皮肤构建为极其密集,多模式,收缩压传感器网络的概念。通过这种方式,网络自身可以减少皮肤感受器产生的大量信号,并且仅将高级功能点对点路由出去,从而避免了复杂的布线要求,同时有望实现大范围的可扩展性。我们的架构和算法受生物皮肤的启发,在到达大脑之前,受体的信号会通过在受体细胞和神经系统中进行处理来增强或抑制。我们通过在两个测试台上进行的工作来说明这个概念,图钉计算机是一个易于配置的平面阵列,包含100多个节点,被设置为“智能墙纸”,而Tribble则是一个球体,表面覆盖了500多种触觉和非接触式传感器在32个相互连接的传感器“单元”中处理的通道。我们还介绍了Z-Tiles,这是一个合作项目,通过将一系列像素化地板砖配置为网格传感器网络,实现了压力成像地板的开发。最后,我们提出了可扩展至更高密度的技术路线图。

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