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A Crystal-Less Embedded Cardiorespiratory Radar System With Duty-Cycled and Pulse-Based Detection for Vital Signs

机译:无晶振嵌入式心肺雷达系统,具有占空比和基于脉搏的生命体征检测功能

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摘要

A duty-cycled and pulse-based embedded radar system without a quartz crystal unit is presented for cardiorespiratory monitoring. A reference clock source with features of high accuracy and temperature independence is directly gained from ac electric power grids. The 50/60 Hz power-line interference is further utilized and converted to a reliable clock source as a substitute for the conventional crystal that can be fed into the radar system. The theoretical analysis of the clock source conversion circuit and the experimental instantaneous frequency deviation from the wall outlet will be described to investigate frequency stability and uncertainty based on statistical evidence and significance. In addition, a pulse control unit (PCU) with a duty-cycle mechanism is implemented to convert the initial clock into a duplet-pulse sequence with a tunable phase delay for simultaneously performing the probing and demodulated pulses. A fully customized embedded radar system driven from a 60 Hz ac source is proposed for real-time physiological detection.
机译:提出了一种不带石英晶体单元的占空比和基于脉冲的嵌入式雷达系统,用于心肺监测。具有高精度和温度无关特性的参考时钟源直接从交流电网获得。50/60 Hz电力线干扰被进一步利用并转换为可靠的时钟源,以替代可馈入雷达系统的传统晶体。本文通过对时钟源转换电路的理论分析和实验瞬时频率偏离墙面插座的分析,基于统计学证据和显著性,研究了频率稳定性和不确定性。此外,还实现了具有占空比机制的脉冲控制单元 (PCU),将初始时钟转换为具有可调相位延迟的双双脉冲序列,以同时执行探测和解调脉冲。提出了一种由60 Hz交流电源驱动的完全定制的嵌入式雷达系统,用于实时生理检测。

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