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Path Loss Characterization for Intra-Vehicle Wearable Deployments at 60 GHz

机译:60 GHz车载可穿戴部署的路径损耗表征

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摘要

In this work, we present the results of a wide-band measurement campaign at 60 GHz conducted inside a Linkker electric city bus. Targeting prospective millimeter-wave (mmWave) public transportation wearable scenarios, we mimic a typical deployment of mobile high-end consumer devices in a dense environment. Specifically, our intra-vehicle deployment includes one receiver and multiple transmitters corresponding to a mmWave access point and passengers' wearable and handheld devices. While the receiver is located in the front part of the bus, the transmitters repeat realistic locations of personal devices (i) at the seat level (e.g., a hand-held device) and (ii) at a height 70 cm above the seat (e.g., a wearable device: augmented reality glasses or a head-mounted display). Based on the measured received power, we construct a logarithmic model for the distance-dependent path loss. The parametrized models developed in the course of this study have the potential to become an attractive ground for the link budget estimation and interference footprint studies in crowded public transportation scenarios.
机译:在这项工作中,我们展示了在Linkker电动城市公交车内进行的60 GHz宽带测量活动的结果。针对潜在的毫米波(mmWave)公共交通可穿戴场景,我们模拟了在密集环境中移动高端消费类设备的典型部署。具体来说,我们的车载部署包括一个接收器和多个与mmWave接入点以及乘客的可穿戴和手持设备相对应的发射器。当接收器位于公交车的前部时,发送器会在座椅高度(例如,手持设备)和(ii)座椅上方70厘米的高度重复显示个人设备的实际位置(例如,可穿戴设备:增强现实眼镜或头戴式显示器)。基于测得的接收功率,我们构建了一个与距离相关的路径损耗的对数模型。在此研究过程中开发的参数化模型有可能成为拥挤的公共交通场景中链路预算估算和干扰足迹研究的诱人基础。

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