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用于无线体域网的灵活超宽带和多输入多输出天线:综述。

Flexible UWB and MIMO Antennas for Wireless Body Area Network: A Review.

机构信息

Department of Electrical and Electronics Engineering, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal 576104, India.

Department of Electronics and Communication Engineering, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal 576104, India.

出版信息

Sensors (Basel). 2022 Dec 6;22(23):9549. doi: 10.3390/s22239549.

Abstract

In recent years, there has been a surge of interest in the field of wireless communication for designing a monitoring system to observe the activity of the human body remotely. With the use of wireless body area networks (WBAN), chronic health and physical activity may be tracked without interfering with routine lifestyle. This crucial real-time data transmission requires low power, high speed, and broader bandwidth communication. Ultrawideband (UWB) technology has been explored for short-range and high-speed applications to cater to these demands over the last decades. The antenna is a crucial component of the WBAN system, which lowers the overall system's performance. The human body's morphology necessitates a flexible antenna. In this article, we comprehensively survey the relevant flexible materials and their qualities utilized to develop the flexible antenna. Further, we retrospectively investigate the design issues and the strategies employed in designing the flexible UWB antenna, such as incorporating the modified ground layer, including the parasitic elements, coplanar waveguide, metamaterial loading, etc. To improve isolation and channel capacity in WBAN applications, the most recent decoupling structures proven in UWB MIMO technology are presented.

摘要

近年来,人们对无线通信领域产生了浓厚的兴趣,希望设计一个监测系统来远程观察人体活动。利用无线体域网 (WBAN),可以在不干扰日常生活方式的情况下跟踪慢性健康和身体活动。这种至关重要的实时数据传输需要低功耗、高速和更宽的带宽通信。超宽带 (UWB) 技术在过去几十年中一直被探索用于短距离和高速应用,以满足这些需求。天线是 WBAN 系统的关键组成部分,它降低了整个系统的性能。人体形态需要灵活的天线。本文全面调查了相关的柔性材料及其特性,用于开发柔性天线。此外,我们还回顾了设计柔性 UWB 天线时遇到的设计问题和所采用的策略,例如采用改进的接地层,包括寄生元件、共面波导、超材料加载等。为了提高 WBAN 应用中的隔离度和信道容量,提出了在 UWB MIMO 技术中证明有效的最新去耦结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf47/9737792/a1d7f00c3512/sensors-22-09549-g001.jpg

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