IoT-Ready Millimeter-Wave Radar Sensors

W. Ahmad, J. Wessel, H. Ng, D. Kissinger
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引用次数: 1

Abstract

This paper demonstrates a millimeter-wave (mm-Wave) radar sensor chip set for industrial, scientific, medical (ISM) and internet of things (IoT) applications. Thanks to their modular expandable wireless transceiver architecture, these radar chips offer implementing multimode radar sensors capable of deploying multiple radar techniques to detect object presence, range, velocity, vibrations and direction of arrival across multiple applications in conjunction with data communication capability for machine-to-machine (M2M) interaction. A 60GHz single-channel radar sensor prototype is implemented where the frequency modulated continuous wave (FMCW) radar technique is applied for object detection and range measurement in a multitarget scenario. A range resolution of 6cm and a ranging precision of 0.lmm at 1m range are experimentally verified. Another two-channel sensor prototype is implemented where multiple-input multiple-output (MIMO) radar technique is applied for direction-of-arrival (DoA) estimation. An experiment of measuring vibration rates from multiple targets at different locations using Doppler radar technique is successfully conducted. This experiment simulates a remote control environment of running machines in factories. Furthermore, an experiment of monitoring a human heartbeat rate remotely by the sensor is performed where a 78bpm rate is measured. Such contactless measurement is extremely important to prevent disease spreading during pandemic seasons such as COVID-19.
物联网就绪毫米波雷达传感器
介绍了一种适用于工业、科学、医疗(ISM)和物联网(IoT)应用的毫米波(mm-Wave)雷达传感器芯片组。由于其模块化可扩展无线收发器架构,这些雷达芯片提供实现多模式雷达传感器,能够部署多种雷达技术,以检测物体的存在、范围、速度、振动和到达方向,并结合机器对机器(M2M)交互的数据通信能力。实现了60GHz单通道雷达传感器原型,其中调频连续波(FMCW)雷达技术应用于多目标场景下的目标检测和距离测量。测距分辨率6cm,测距精度0。LMM在1m范围内进行了实验验证。采用多输入多输出(MIMO)雷达技术估计到达方向(DoA),实现了另一种双通道传感器原型。利用多普勒雷达技术成功地进行了多目标不同位置振动率的测量实验。本实验模拟了工厂机器运行的远程控制环境。此外,通过传感器进行了远程监测人类心跳速率的实验,其中测量了78bpm的速率。这种非接触式测量对于预防COVID-19等大流行季节的疾病传播极为重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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