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24 GHz Flexible Antenna for Doppler Radar-Based Human Vital Signs Monitoring

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Kathuria, Nitin

Seet, Boon-Chong

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MDPI AG

Abstract

Noncontact monitoring of human vital signs has been an emerging research topic in recent years. A key approach to this monitoring is the use of the Doppler radar concept which enables real-time vital signs detection, resulting in a new class of radar system known as bio-radar. The antennas are a key component of any bio-radar module and their designs should meet the common requirements of bio-radar applications such as high radiation directivity and mechanical flexibility. This paper presents the design of a four-element antenna array on a flexible liquid crystal polymer (LCP) substrate of 100 μm thickness and εr of 3.35. The designed antenna array can be used with a 24 GHz bio-radar for vital signs monitoring in a non-contact manner. It features a relatively compact size of 36.5 × 53 mm2 and measured gain of 5.81 dBi. The two vital signs: breathing rate (BR) and heart rate (HR) of two human subjects are detected with relatively good accuracy using the fabricated antenna array and radio frequency (RF) output power of −3 dBm from a distance of approximately 60 cm. The effect of bending on the antenna performance is also analyzed.

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Keywords

Doppler radar, bending analysis, bio-radar, flexible antenna, human vital signs, liquid crystal polymer, noncontact monitoring, Science & Technology, Physical Sciences, Technology, Chemistry, Analytical, Engineering, Electrical & Electronic, Instruments & Instrumentation, Chemistry, Engineering, 40 Engineering, 46 Information and Computing Sciences, 4006 Communications Engineering, 4009 Electronics, Sensors and Digital Hardware, 4605 Data Management and Data Science, 0301 Analytical Chemistry, 0502 Environmental Science and Management, 0805 Distributed Computing, 0906 Electrical and Electronic Engineering, 4008 Electrical engineering, 4104 Environmental management, 4606 Distributed computing and systems software

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Sensors, ISSN: 1424-8220 (Print); 1424-8220 (Online), MDPI AG, 21(11), 3737-. doi: 10.3390/s21113737

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© 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article.

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Except where otherwise noted, this item's license is described as Creative Commons Attribution (CC BY) license