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RF-IDraw: Virtual Touch Screen in the Air Using RF Signals

机译:RF-IDraw:使用RF信号的空中虚拟触摸屏

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摘要

Prior work in RF-based positioning has mainly focused on discovering the absolute location of an RF source, where state-of-the-art systems can achieve an accuracy on the order of tens of centimeters using a large number of antennas. However, many applications in gaming and gesture based interface see more benefits in knowing the detailed shape of a motion. Such trajectory tracing requires a resolution several fold higher than what existing RF-based positioning systems can offer. This paper shows that one can provide a dramatic increase in trajectory tracing accuracy, even with a small number of antennas. The key enabler for our design is a multi-resolution positioning technique that exploits an intrinsic tradeoff between improving the resolution and resolving ambiguity in the location of the RF source. The unique property of this design is its ability to precisely reconstruct the minute details in the trajectory shape, even when the absolute position might have an offset. We built a prototype of our design with commercial off-the-shelf RFID readers and tags and used it to enable a virtual touch screen, which allows a user to interact with a desired computing device by gesturing or writing her commands in the air, where each letter is only a few centimeters wide.
机译:基于RF的定位的现有工作主要集中在发现RF源的绝对位置上,在此,最先进的系统可以使用大量天线实现数十厘米的精度。但是,在游戏和基于手势的界面中的许多应用程序在了解运动的详细形状时会看到更多好处。这种轨迹跟踪需要比现有的基于RF的定位系统所能提供的分辨率高几倍的分辨率。本文表明,即使天线数量很少,也可以显着提高轨迹跟踪精度。我们设计的关键推动力是一种多分辨率定位技术,该技术利用了固有的权衡来提高分辨率和解决RF源位置的歧义。此设计的独特属性是即使在绝对位置可能有偏移的情况下,它也可以精确地重建轨迹形状中的微小细节的能力。我们使用现成的商用RFID阅读器和标签构建了设计原型,并使用它来实现虚拟触摸屏,从而允许用户通过空中手势或编写命令来与所需的计算设备进行交互。每个字母只有几厘米宽。

著录项

  • 来源
    《Computer communication review》 |2014年第4期|235-246|共12页
  • 作者单位

    Massachusetts Institute of Technology;

    Massachusetts Institute of Technology;

    Massachusetts Institute of Technology;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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