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首页> 外文期刊>ACM Transactions on Graphics >RFIG lamps: Interacting with a self-describing world via photosensing wireless tags and projectors
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RFIG lamps: Interacting with a self-describing world via photosensing wireless tags and projectors

机译:RFIG灯:通过感光的无线标签和投影仪与自我描述的世界互动

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This paper describes how to instrument the physical world so that objects become self-describing, communicating their identity, geometry, and other information such as history or user annotation. The enabling technology is a wireless tag which acts as a radio frequency identity and geometry RFIG) transponder. We show how addition of a photo-sensor to a wireless tag significantly extends its functionality to allow geometric operations - such as finding the 3D position of a tag, or detecting change in the shape of a tagged object. Tag data is presented to the user by direct projection using a handheld locale-aware mobile projector. We introduce a novel technique that we call interactive projection to allow a user to interact with projected information e.g. to navigate or update the projected information.The ideas are demonstrated using objects with active radio frequency (RF) tags. But the work was motivated by the advent of unpowered passive-RFID, a technology that promises to have significant impact in real-world applications. We discuss how our current prototypes could evolve to passive-RFID in the future.
机译:本文介绍了如何对物理世界进行检测,以使对象能够自我描述,传达其身份,几何形状以及其他信息,例如历史记录或用户注释。启用技术是一种无线标签,可充当射频标识和几何(RFIG)应答器。我们展示了将光传感器添加到无线标签中如何显着扩展其功能以允许进行几何操作-例如查找标签的3D位置或检测被标记对象的形状变化。通过使用手持式可识别语言环境的移动投影仪进行直接投影,可以将标签数据呈现给用户。我们介绍了一种称为互动投影的新颖技术,以允许用户与投影信息互动,例如导航或更新计划的信息。使用带有活动射频(RF)标签的对象演示这些想法。但是这项工作是由无源无源RFID的出现推动的,该技术有望在现实应用中产生重大影响。我们讨论了当前的原型如何在将来演变为无源RFID。

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