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Jamming User Interfaces: Programmable Particle Stiffness and Sensing for Malleable and Shape-Changing Devices

机译:干扰用户界面:可塑和可变形设备的可编程粒子刚度和传感

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Malleable and organic user interfaces have the potential to enable radically new forms of interactions and expressiveness through flexible, free-form and computationally controlled shapes and displays. This work, specifically focuses on particle jamming as a simple, effective method for flexible, shape-changing user interfaces where programmatic control of material stiffness enables haptic feedback, deformation, tunable affordances and control gain. We introduce a compact, low-power pneumatic jamming system suitable for mobile devices, and a new hydraulic-based technique with fast, silent actuation and optical shape sensing. We enable jamming structures to sense input and function as interaction devices through two contributed methods for high-resolution shape sensing using: 1) index-matched particles and fluids, and 2) capacitive and electric field sensing. We explore the design space of malleable and organic user interfaces enabled by jamming through four motivational prototypes that highlight jamming's potential in HCI, including applications for tabletops, tablets and for portable shape-changing mobile devices.
机译:可延展的有机用户界面具有通过灵活,自由形式和受计算控制的形状和显示来实现全新形式的交互和表达的潜力。这项工作特别关注粒子干扰,它是用于灵活,可变形的用户界面的一种简单有效的方法,在该界面中,材料刚度的编程控制可实现触觉反馈,变形,可调能力和控制增益。我们推出适用于移动设备的紧凑型,低功耗气动干扰系统,以及一种基于液压的新技术,该技术具有快速,静音的致动和光学形状感测功能。我们使用两种有助于高分辨率形状感测的方法,使干扰结构能够感测输入并充当交互设备:1)折射率匹配的粒子和流体,以及2)电容和电场感测。我们通过四个激励原型来探讨可延展的有机用户界面的设计空间,这些原型突出了人机交互在人机交互中的潜力,包括台式机,平板电脑和便携式变形移动设备的应用。

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