无设备人体检测的多路径链路表征与自适应研究

Zimu Zhou, Zheng Yang, Chenshu Wu, Yunhao Liu, L. Ni
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引用次数: 22

摘要

基于无线的无设备人体传感引起了越来越多的研究兴趣,并刺激了一系列新的基于位置的服务和人机交互应用,用于娱乐,资产安全和老年人护理。这些应用程序的一个主要功能是首先检测人类的存在,然后提取更高级别的上下文,如物理坐标、身体手势,甚至日常活动。然而,在密集多路径传播的情况下,即使是可靠地识别人类的存在也不是微不足道的。多径效应会使简化的传播模型失效,使接收信号特征失真,从而降低检测率,缩小检测范围。在本文中,我们通过射线反射模型描述了人类存在对无线信号的影响,并提出了一种可测量的商品WiFi基础设施指标,作为检测灵敏度的代理。为了在多路径密集的室内场景中实现更高的检测率和更广泛的传感覆盖,我们设计了一种利用频率分集和空间分集的轻量级子载波和路径配置方案。我们以标准WiFi设备为原型设计了我们的方案。在两个典型的办公环境中进行的评估表明,检测率为92.0%,假阳性率为4.5%,在最低检测率为90%的情况下,检测范围几乎增加了1倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On Multipath Link Characterization and Adaptation for Device-Free Human Detection
Wireless-based device-free human sensing has raised increasing research interest and stimulated a range of novel location-based services and human-computer interaction applications for recreation, asset security and elderly care. A primary functionality of these applications is to first detect the presence of humans before extracting higher-level contexts such as physical coordinates, body gestures, or even daily activities. In the presence of dense multipath propagation, however, it is non-trivial to even reliably identify the presence of humans. The multipath effect can invalidate simplified propagation models and distort received signal signatures, thus deteriorating detection rates and shrinking detection range. In this paper, we characterize the impact of human presence on wireless signals via ray-bouncing models, and propose a measurable metric on commodity WiFi infrastructure as a proxy for detection sensitivity. To achieve higher detection rate and wider sensing coverage in multipath-dense indoor scenarios, we design a lightweight sub carrier and path configuration scheme harnessing frequency diversity and spatial diversity. We prototype our scheme with standard WiFi devices. Evaluations conducted in two typical office environments demonstrate a detection rate of 92.0% with a false positive of 4.5%, and almost 1x gain in detection range given a minimal detection rate of 90%.
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