A Compact Ultrawideband Antenna System With Stable Broadside Radiation Patterns for Brain–Machine Interface Applications

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초록

In this study, we have developed a compact and ultrathin wideband antenna system with stable broadside radiation patterns for brain-machine interface applications. The antenna system operates in the ultrawideband (UWB) frequency range and employs a deionized (DI) water-infilled superstrate to achieve efficient radiation in the broadside direction. The antenna was constructed using a thin Taconic TRF-43 substrate, which has a relative permittivity ( εr ) of 4.3 and a loss tangent (tan δ ) of 0.0035. By incorporating a modified rectangular slot on the ground plane and a tapered stepped microstrip feedline, we achieved a broad frequency response. The overall system consists of a compact 10×9×0.7 mm antenna, along with system dummies such as batteries, sensors, and electronic components, all enclosed in a biocompatible casing manufactured via 3-D printing. The design and analysis of the system were performed using computer simulation technology (CST) and Sim4Life simulation tools. To validate our findings, we built a prototype and conducted measurements using a brain phantom made of semi-solid artificial tissue-emulating (ATE) material. Our results demonstrate that the antenna exhibits a −10-dB bandwidth of 129% from 3 to 14 GHz, with a peak gain of −19 dBi at 3 GHz while maintaining the desired broadside radiation characteristics.

키워드

Brain implantable systembroadside radiation characteristicscompact ultra-wideband antennadeionized waterslot antennaIMPLANTABLE ANTENNABAND ANTENNAUWB ANTENNADESIGN
제목
A Compact Ultrawideband Antenna System With Stable Broadside Radiation Patterns for Brain–Machine Interface Applications
저자
Shah, Syed Imran HussainBasir, AbdulYoo, HyoungsukYoon, Ick-Jae
DOI
10.1109/TAP.2024.3496091
발행일
2025-01
유형
Article
저널명
IEEE Transactions on Antennas and Propagation
73
1
페이지
629 ~ 634