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Bandwidth-Enhanced Compact Circularly-Polarized Wearable Antenna with a Magneto-Electric Dipoleopen access

Authors
Le, Tu TuanKim, Yong-DeokYun, Tae Yeoul
Issue Date
Nov-2022
Publisher
Institute of Electrical and Electronics Engineers Inc.
Keywords
Dipole antennas; Antennas; Substrates; Broadband antennas; Textiles; Wireless communication; Magnetoelectric effects; Crossed-dipole; magneto-electric dipole; SAR; WBAN; wearable antenna
Citation
IEEE Access, v.10, pp 123225 - 123232
Pages
8
Indexed
SCIE
SCOPUS
Journal Title
IEEE Access
Volume
10
Start Page
123225
End Page
123232
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/185117
DOI
10.1109/ACCESS.2022.3224148
ISSN
2169-3536
2169-3536
Abstract
A compact broadband circularly-polarized wearable antenna is presented for wireless body area network (WBAN) off-body communications. The proposed antenna comprises two substrates, a semi-rigid substrate with low loss-tangent and a textile substrate, that can boost the antenna performance while maintaining wearer comfort. Initially, a crossed-dipole as a fundamental radiator that radiates a circularly polarized (CP) wave is printed on the semi-rigid substrate. A pair of L-shaped slits are loaded into crossed-dipole arm, which significantly miniaturizes the antenna size. A magneto-electric dipole as a parasitic element is loaded to widen axial ratio bandwidth (ARBW) and impedance bandwidth (IBW). A conductive textile is attached to the textile substrate as the ground plane to minimize the specific absorption rate (SAR). The simulated SAR at 5.85 GHz is below the US and EU limit standards. The proposed antenna has solved typical issues in wearable antenna design such as low gain, low radiation efficiency, large size, and narrow IBW and ARBW, while still providing comfortability to wearers.
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