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Recent Advances in Wearable Antenna Technologies: A Review

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TLDR
In this paper, the authors address the numerous problems and obstacles in the production of wearable antennas, their variety of materials, and the techniques of manufacturing alongside with bending scheme, and provide a summary of creative features and their respective approaches to address these problems.
Abstract
Wearable antennas have received a great deal of popularity in recent years owing to their enticing characteristics and opportunities to realize lightweight, compact, low-cost, and versatile wireless communications and environments. These antennas must be conformal, and they must be built using lightweight materials and constructed in a low-profile configuration when mounted on various areas of the human body. These antennas ought to be able to function close to the human body with limited deterioration. These criteria render the layout of wearable antennas demanding, particularly when considering factors such as investigating the usability of textile substrates, high conductive materials during fabrication processes, and the effect of body binding scenarios on the performance of the design. Although there are minor differences in magnitude based on the implementations, several of these problems occur in the body-worn deployment sense. This study addresses the numerous problems and obstacles in the production of wearable antennas, their variety of materials, and the techniques of manufacturing alongside with bending scheme. This is accompanied by a summary of creative features and their respective approaches to address these problems recently raised by work in this area by the science community. © 2020. All Rights Reserved.

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Journal ArticleDOI

A Road towards 6G Communication—A Review of 5G Antennas, Arrays, and Wearable Devices

TL;DR: In this paper , the authors summarized the motivation and potential of the 6G communication system and discussed its key features, and the current state-of-the-art of 5G antenna technology, which includes existing 5G antennas and arrays and 5G wearable antennas, are summarized.
Peer Review

A Road towards 6G Communication—A Review of 5G Antennas, Arrays, and Wearable Devices

TL;DR: The motivation and potential of the 6G communication system is summarized and its key features are discussed and the useful methods and techniques of exiting antenna design works that could mitigate the challenges and concerns of the emerging 5G and 6G applications are described.
Journal ArticleDOI

Textile Slotted Waveguide Antennas for Body-Centric Applications

TL;DR: In this paper , a textile realization of a slotted waveguide antenna is proposed, where the antenna is realized using conductive fabric to manufacture the walls of a rectangular waveguide in which the slots were cut out.
References
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Journal ArticleDOI

Compact All-Textile Dual-Band Antenna Loaded With Metamaterial-Inspired Structure

TL;DR: In this paper, a dual-band, wearable metamaterial-loaded antenna is proposed for 2.4/5.2 GHz WLAN applications, which features a low backward radiation in both bands.
Journal ArticleDOI

Dual-band wearable antennas over EBG substrate

TL;DR: In this paper, a dual-band coplanar patch antenna integrated with an electromagnetic bandgap substrate is reported, made from common clothing fabrics and operates at the 2.45 and 5.8 GHz bands.
Journal ArticleDOI

Microwave imaging for neoadjuvant chemotherapy monitoring: initial clinical experience

TL;DR: These preliminary findings suggest that both early and late conductivity property changes correlate well with overall treatment response to neoadjuvant therapy in locally advanced breast cancer.
Journal ArticleDOI

Design and Manufacturing of Robust Textile Antennas for Harsh Environments

TL;DR: The potential performance reduction due to the material characteristics is addressed in this paper, and methods to improve performance robustness are introduced.
Journal ArticleDOI

E-Textile Conductors and Polymer Composites for Conformal Lightweight Antennas

TL;DR: In this article, a conformal and lightweight antenna technology based on E-textile conductors and polymer-ceramic composites was proposed, which achieved structural integrity, light weight and conformity to the platform.
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