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PADS: Passive detection of moving targets with dynamic speed using PHY layer information

机译:PADS:使用PHY层信息,通过动态速度的移动目标被动检测

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Device-free passive detection is an emerging technology to detect whether there exists any moving entities in the area of interests without attaching any device to them. It is an essential primitive for a broad range of applications including intrusion detection for safety precautions, patient monitoring in hospitals, child and elder care at home, etc. Despite of the prevalent signal feature Received Signal Strength (RSS), most robust and reliable solutions resort to finer-grained channel descriptor at physical layer, e.g., the Channel State Information (CSI) in the 802.11n standard. Among a large body of emerging techniques, however, few of them have explored full potentials of CSI for human detection. Moreover, space diversity supported by nowadays popular multi-antenna systems are not investigated to the comparable extent as frequency diversity. In this paper, we propose a novel scheme for device-free PAssive Detection of moving humans with dynamic Speed (PADS). Both amplitude and phase information of CSI are extracted and shaped into sensitive metrics for target detection; and CSI across multi-antennas in MIMO systems are further exploited to improve the detection accuracy and robustness. We prototype PADS on commercial WiFi devices and experiment results in different scenarios demonstrate that PADS achieves great performance improvement in spite of dynamic human movements.
机译:无设备被动检测是一种新兴技术,用于检测感兴趣区域是否存在任何移动实体,而无需将任何设备连接到它们。这是广泛应用的基本原始原始原始原始原始原始原始基本包括安全预防措施,医院,儿童和老年人的患者的患者监测等。尽管普遍存在的信号强度(RSS),最坚固且可靠的解决方案在物理层处度假前的粗大频道描述符,例如802.11n标准中的信道状态信息(CSI)。然而,在大量的新兴技术中,其中很少有人探索了人类检测的CSI的全部潜力。此外,目前支持的空间多样性是流行的多天线系统被调查为与频率分集相当的程度。在本文中,我们提出了一种具有动态速度(焊盘)的无装置无源检测的新颖方案。 CSI的两个幅度和相位信息被提取和成形为靶检测的敏感度量;进一步利用MIMO系统中多天线的CSI,以提高检测精度和鲁棒性。我们在商业WiFi设备上的原型垫和实验导致不同的场景表明,尽管有动态人类运动,垫达到了良好的性能改善。

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