基于vlc的患者健康监测系统的路径损失和RMS延迟扩展模型

Baris Donmez, Farshad Miramirkhani
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引用次数: 1

摘要

可见光通信(VLC)作为无处不在的射频(RF)的补充技术而出现,因为VLC满足超5g通信系统趋势所驱动的极高数据速率、极高可靠性和超低延迟要求。由于VLC为医院环境中的电磁干扰(EMI)和安全问题提供了解决方案,因此它成为医疗身体传感器网络(MBSNs)的更好替代方案。尽管如此,3D环境中的用户移动性会导致通道直流增益下降,从而导致光路损耗,并影响多径通道的时间色散特性。在本文中,我们采用基于光线跟踪的特定地点通道建模方法来表征基于vlc的MBSNs通道参数。基于通道特征,我们提出了现实重症监护室(ICU)病房和家庭型病房(FTPR)中路径损失和均方根(RMS)延迟传播的统计模型,其中三个MBSNs节点所在的用户在广泛的现实随机轨迹上行走。仿真结果表明,路径损耗和RMS时延扩展均服从对数正态分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Path Loss and RMS Delay Spread Model for VLC-based Patient Health Monitoring System
Visible Light Communication (VLC) emerges as a supplementary technology to ubiquitous Radio Frequency (RF) since VLC meets the very high data rate, very high reliability, and ultra-low latency requirements driven by the trends in beyond-5G communication systems. Since VLC offers a solution to Electromagnetic Interference (EMI) and security problems in hospital environments, it becomes a better alternative for Medical Body Sensor Networks (MBSNs). Nonetheless, user mobility in a 3D environment causes a degradation in channel DC gain that leads to an optical path loss and also affects the time dispersive properties of multipath channels. In our paper, we adopt a ray tracing-based site-specific channel modeling method to characterize VLC-based MBSNs channel parameters. Based on the channel characteristics, we propose statistical models for path loss and Root Mean Square (RMS) delay spread in realistic Intensive Care Unit (ICU) ward and Family-Type Patient Room (FTPR) where user upon which three MBSNs nodes placed walks over extensive realistic random trajectories. The simulation results indicate that both path loss and RMS delay spread follow a log-normal distribution.
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