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基于自注入锁定雷达技术的腕部脉搏率监测仪。

Wrist Pulse Rate Monitor Using Self-Injection-Locked Radar Technology.

机构信息

Department of Electrical Engineering, National Sun Yat-sen University, Kaohsiung 80424, Taiwan.

出版信息

Biosensors (Basel). 2016 Oct 26;6(4):54. doi: 10.3390/bios6040054.

Abstract

To achieve sensitivity, comfort, and durability in vital sign monitoring, this study explores the use of radar technologies in wearable devices. The study first detected the respiratory rates and heart rates of a subject at a one-meter distance using a self-injection-locked (SIL) radar and a conventional continuous-wave (CW) radar to compare the sensitivity versus power consumption between the two radars. Then, a pulse rate monitor was constructed based on a bistatic SIL radar architecture. This monitor uses an active antenna that is composed of a SIL oscillator (SILO) and a patch antenna. When attached to a band worn on the subject's wrist, the active antenna can monitor the pulse on the subject's wrist by modulating the SILO with the associated Doppler signal. Subsequently, the SILO's output signal is received and demodulated by a remote frequency discriminator to obtain the pulse rate information.

摘要

为了在生命体征监测中实现灵敏度、舒适性和耐用性,本研究探索了雷达技术在可穿戴设备中的应用。本研究首先使用自注入锁定(SIL)雷达和传统连续波(CW)雷达在 1 米距离处检测到主体的呼吸率和心率,以比较两种雷达的灵敏度与功耗。然后,基于双基地 SIL 雷达架构构建了脉搏率监视器。该监视器使用有源天线,由 SIL 振荡器(SILO)和贴片天线组成。当附着在佩戴者手腕上的腕带时,有源天线可以通过用相关的多普勒信号调制 SILO 来监测佩戴者手腕上的脉搏。随后,远程鉴频器接收并解调 SILO 的输出信号,以获得脉搏率信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dbd/5192374/418b7fdb45d7/biosensors-06-00054-g001.jpg

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