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Time-Frequency Characteristics of In-Home Radio Channels Influenced by Activities of the Home Occupant

机译:居住者活动影响的家庭无线电信道的时频特性

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摘要

While aging is a serious global concern, in-home healthcare monitoring solutions are limited to context-aware systems and wearable sensors, which may easily be forgotten or ignored for privacy and comfort reasons. An emerging non-wearable fall detection approach is based on processing radio waves reflected off the body, who has no active interaction with the system. This paper reports on an indoor radio channel measurement campaign at 5.9 GHz, which has been conducted to study the impact of fall incidents and some daily life activities on the temporal and spectral properties of the indoor channel under both line-of-sight (LOS) and obstructed-LOS (OLOS) propagation conditions. The time-frequency characteristic of the channel has been thoroughly investigated by spectrogram analysis. Studying the instantaneous Doppler characteristics shows that the Doppler spread ignores small variations of the channel (especially under OLOS conditions), but highlights coarse ones caused by falls. The channel properties studied in this paper can be considered to be new useful metrics for the design of reliable fall detection algorithms. We share all measured data files with the community through Code Ocean. The data can be used for validating a new class of channel models aiming at the design of smart activity recognition systems via a software-based approach.
机译:尽管衰老是一个严重的全球性问题,但家庭医疗监控解决方案仅限于上下文感知的系统和可穿戴式传感器,出于隐私和舒适的原因,很容易将其遗忘或忽略。一种新兴的非穿戴式跌倒检测方法是基于处理从身体反射的无线电波,该无线电波与系统没有主动交互。本文报道了在5.9 GHz频率下进行的室内无线电信道测量活动,该运动是为了研究坠落事件和某些日常生活活动在两种视线(LOS)下对室内信道的时间和频谱特性的影响和阻塞的LOS(OLOS)传播条件。通道的时频特性已通过频谱图分析进行了彻底研究。对瞬时多普勒特性的研究表明,多普勒扩展忽略了通道的细微变化(特别是在OLOS条件下),但突出了由跌落引起的粗糙变化。本文研究的信道特性可以被认为是设计可靠的跌倒检测算法的新有用指标。我们通过Code Ocean与社区共享所有测得的数据文件。该数据可用于通过基于软件的方法验证旨在设计智能活动识别系统的新型渠道模型。

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