4.6 Article

Flexible and Transparent Circularly Polarized Patch Antenna for Reliable Unobtrusive Wearable Wireless Communications

期刊

SENSORS
卷 22, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/s22031276

关键词

circular polarization; flexible; polymer; transparent; wearable

资金

  1. Enterprise Ireland
  2. HOLIS-TICS DTIF [EIDT20180291-A]
  3. Science Foundation Ireland (SFI)
  4. Connect Centre for Future Networks and Communications [13/RC/2077]
  5. Insight Centre for Data Analytics [SFI/12/RC/2289]
  6. European Regional Development Fund

向作者/读者索取更多资源

This paper presents a circularly polarized flexible and transparent circular patch antenna suitable for body-worn wireless communications. The performance of the antenna is compared with a non-transparent counterpart, highlighting the suitability of the proposed materials. Detailed numerical and experimental investigations verify the proposed design, and the compatibility of the antenna in wearable applications is evaluated by testing its performance on a forearm phantom and calculating the specific absorption rate (SAR).
This paper presents a circularly polarized flexible and transparent circular patch antenna suitable for body-worn wireless-communications. Circular polarization is highly beneficial in wearable wireless communications, where antennas, as a key component of the RF front-end, operate in dynamic environments, such as the human body. The demonstrated antenna is realized with highly flexible, robust and transparent conductive-fabric-polymer composite. The performance of the explored flexible-transparent antenna is also compared with its non-transparent counterpart manufactured with non-transparent conductive fabric. This comparison further demonstrates the suitability of the proposed materials for the target unobtrusive wearable applications. Detailed numerical and experimental investigations are explored in this paper to verify the proposed design. Moreover, the compatibility of the antenna in wearable applications is evaluated by testing the performance on a forearm phantom and calculating the specific absorption rate (SAR).

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