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A 3D Non-Stationary Cluster Channel Model for Human Activity Recognition

机译:用于人类活动识别的3D非静止群集频道模型

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This paper proposes a three-dimensional (3D) non- stationary fixed-to-fixed indoor channel simulator model for human activity recognition. The channel model enables the formulation of temporal variations of the received signal caused by a moving human. The moving human is modelled by a cluster of synchronized moving scatterers. Each of the moving scatterers in a cluster is described by a 3D deterministic trajectory model representing the motion of specific body parts of a person, such as wrists, ankles, head, and waist. We derive the time-variant (TV) Doppler frequencies caused by the motion of each moving scatterer by using the TV angles of motion, angles of arrival, angles of departure. Moreover, we derive the complex channel gain of the received signal. Furthermore, we analyze the TV Doppler power spectral density of the complex channel gain by using the concept of the spectrogram and present its expression in approximated form. Also, we derive the TV mean Doppler shift and TV Doppler spread from the approximated spectrogram. The accuracy of the results is validated by simulations. The channel simulator is beneficial for the development of activity recognition systems with non-wearable devices as the demand for such systems has increased recently.
机译:本文提出了一种用于人类活动识别的三维(3D)非静止固定到固定的室内通道模拟器模拟器模型。信道模型使得能够制定由移动人类引起的接收信号的时间变型。移动人类由一组同步的移动散射体进行建模。集群中的每个移动散射器由表示人的特定身体部位的运动的3D确定性轨迹模型描述,例如手腕,脚踝,头部和腰部。我们通过使用电视的运动,到达角度,出发角度,偏离角度来得出由每个移动散射者的运动引起的时变(TV)多普勒频率引起的时变(TV)多普勒频率。此外,我们得出了接收信号的复杂信道增益。此外,我们通过使用频谱图的概念来分析复杂信道增益的电视多普勒功率谱密度,并以近似形式呈现其表达。此外,我们推出了电视意味着多普勒换档和电视多普勒从近似谱图传播。通过模拟验证结果的准确性。信道模拟器有利于开发具有非可穿戴设备的活动识别系统,因为对这种系统的需求最近增加。

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