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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Sensitivity Enhanced Vital Sign Detection Based on Antenna Reflection Coefficient Variation
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Sensitivity Enhanced Vital Sign Detection Based on Antenna Reflection Coefficient Variation

机译:基于天线反射系数变化的灵敏度增强的生命体征检测

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This paper presents a vital sign detection sensor based on reflection coefficient variance from an antenna used in wireless communication devices. The near-field effect is estimated by performing 3D full-wave simulations using a dipole antenna and the magnitude variation of the reflection coefficient induced by human thorax movement due to heart and lungs is observed. The results support the possibility of vital sign detection based on the magnitude variation of the reflection coefficient from an antenna, which can be explained as a narrowband modulation scheme. In particular, a sensitivity enhancement method is proposed and analyzed, and experiments are carried out for heartbeat detection using a dipole antenna with the proposed system. Experimental results are compared between the direct detection and sensitivity enhancement detection schemes. FM signal is also applied to confirm that the proposed sensor works properly in conjunction with an existing communication system. The proposed cardiopulmonary detection sensor is implemented with off-the-shelf components at 2.4 GHz and excellent performance is obtained.
机译:本文提出了一种基于来自无线通信设备中天线的反射系数变化的生命体征检测传感器。通过使用偶极天线执行3D全波仿真,可以估计近场效应,并观察到由于人的胸腔运动引起的反射系数的幅度变化(由于心肺)。结果支持基于天线反射系数幅度变化的生命体征检测的可能性,这可以解释为窄带调制方案。特别地,提出并分析了一种灵敏度增强方法,并且在所提出的系统中使用偶极天线进行了用于心跳检测的实验。在直接检测方案和灵敏度增强检测方案之间比较了实验结果。 FM信号也可用于确认建议的传感器与现有通信系统配合正常工作。所提出的心肺检测传感器采用2.4 GHz的现成组件实现,并具有出色的性能。

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