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Noncontact Proximity Vital Sign Sensor Based on PLL for Sensitivity Enhancement

机译:基于PLL的非接触式接近生命体征传感器,可增强灵敏度

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In this paper, a noncontact proximity vital sign sensor, using a phase locked loop (PLL) incorporated with voltage controlled oscillator (VCO) built-in planar type circular resonator, is proposed to enhance sensitivity in severe environments. The planar type circular resonator acts as a series feedback element of the VCO as well as a near-field receiving antenna. The frequency deviation of the VCO related to the body proximity effect ranges from 0.07 MHz/mm to 1.8 MHz/mm (6.8 mV/mm to 205 mV/mm in sensitivity) up to a distance of 50 mm, while the amount of VCO drift is about 21 MHz in the condition of 60$^{circ}{rm C}$ temperature range and discrete component tolerance of $pm$5%. Total frequency variation occurs in the capture range of the PLL which is 60 MHz. Thus, its loop control voltage converts the amount of frequency deviation into a difference of direct current (DC) voltage, which is utilized to extract vital signs regardless of the ambient temperature. The experimental results reveal that the proposed sensor placed 50 mm away from a subject can reliably detect respiration and heartbeat signals without the ambiguity of harmonic signals caused by respiration signal at an operating frequency of 2.4 GHz.
机译:在本文中,提出了一种非接触式接近生命体征传感器,该传感器使用锁相环(PLL)和压控振荡器(VCO)内置平面型圆形谐振器,可增强恶劣环境下的灵敏度。平面型圆形谐振器用作VCO的串联反馈元件以及近场接收天线。与人体接近效应有关的VCO的频率偏差范围为0.07 MHz / mm至1.8 MHz / mm(灵敏度为6.8 mV / mm至205 mV / mm),直至50 mm的距离,而VCO的漂移量在60°F的温度范围和分立元件容差条件下,大约为21 MHz。 $ pm $ 5%。总频率变化发生在PLL的捕获范围内,即60 MHz。因此,其环路控制电压将频率偏差量转换为直流(DC)电压差,无论环境温度如何,都可利用该差值提取生命体征。实验结果表明,所提出的传感器放置在距受试者50毫米处,可以可靠地检测呼吸和心跳信号,而不会因工作频率为2.4 GHz的呼吸信号引起的谐波信号产生歧义。

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