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Non-Contact Vital Signs Monitoring for Multiple Subjects Using a Millimeter Wave FMCW Automotive Radar

机译:使用毫米波FMCW汽车雷达对多个对象进行非接触式生命体征监测

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Technology for in-cabin non-contact monitoring of driver vital signs is a growing area of interest for automotive applications. This has been spurred in part by successful demonstrations of remote sensing of human physiological motion using radar, for healthcare applications. However, most reported physiological radar results have focused on the use of continuous wave radar operating between the 2.4 GHz up to 24 GHz, to monitor a single, isolated subject. There is a recent paradigm shift in the automotive radar industry towards the use of W-band frequency modulated continuous wave radar. This research investigates the feasibility of extracting vital signs information for both single and multi-subject scenarios, utilizing a newly developed 76–81 GHz FMCW single channel architecture automotive radar. Chirp parameters and signal processing steps were developed to extract phase information for signals reflected from tiny movement of a subject's chest surface. Beam steering techniques were used to isolate the respiratory signatures for individual subjects from radar signals reflected simultaneously from multiple subjects. Experimental results showed that independent respiratory signatures could be isolated and measured for subjects separated by a 30° angular discrimination limit.
机译:驾驶室内生命体征非接触式监视技术已经成为汽车应用领域中日益受到关注的领域。成功演示了使用雷达对人体生理运动进行遥感以用于医疗保健应用的部分原因。但是,大多数报道的生理雷达结果都集中在使用工作在2.4 GHz至24 GHz之间的连续波雷达来监视单个孤立的对象上。在汽车雷达行业中,最近发生了向使用W波段调频连续波雷达的转变。这项研究调查了使用新开发的76–81 GHz FMCW单通道架构汽车雷达为单人和多人场景提取生命体征信息的可行性。开发了线性调频脉冲参数和信号处理步骤,以提取从受试者胸部表面微小运动所反射的信号的相位信息。波束控制技术被用于从多个对象同时反射的雷达信号中分离单个对象的呼吸特征。实验结果表明,对于被30°角度分辨力限制分开的受试者,可以隔离和测量独立的呼吸信号。

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