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使用特征模方法设计用于生物遥测通信的紧凑型双频、双极化天线。

Designing a Compact Dual-Band, Dual-Polarized Antenna for Biotelemetry Communications Using the Characteristic Mode Method.

作者信息

Xu Xiaoming, Song Zhiwei, Wang Yuchao

机构信息

School of Electrical Engineering, Xinjiang University, Urumqi 830017, China.

出版信息

Sensors (Basel). 2023 Nov 10;23(22):9094. doi: 10.3390/s23229094.

Abstract

A compact dual-band, dual-polarized, implantable antenna was designed using the characteristic mode method for operation in the wireless medical telemetry service (WMTS) band (1.4 GHz) and the industrial, scientific, and medical (ISM) band (2.45 GHz). By utilizing slotting techniques and materials with high dielectric constants, the antenna volume was minimized to 47.4 mm, and circular polarization was gained in the WMTS band by using the characteristic mode method. A three-layer physical model of human tissues was constructed in a simulation, and a biogel and minced pork were used in the measurements. The measured peak gains are -20.85 dBi (1.4 GHz) and -22.15 dBi (2.45 GHz). The measured effective axis ratio bandwidth in the WMTS band is 170 MHz (1.33-1.50 GHz, 12.0%), and the impedance bandwidth in the ISM band is 390 MHz (2.21-2.60 GHz, 16.2%). At 1.4 GHz and 2.45 GHz, the largest 1 g average SAR values are 376 W/Kg and 318 W/Kg, which comply with IEEE C95.1-1999. Moreover, when the communication chain affinity exceeds 20 dB for 1.4 GHz and 2.4 GHz, the transceiver range reaches 8.2 m and 9.7 m. This antenna can be used for implantable wireless telemetry systems.

摘要

采用特征模方法设计了一种紧凑的双频段、双极化可植入天线,用于在无线医疗遥测服务(WMTS)频段(1.4 GHz)和工业、科学及医疗(ISM)频段(2.45 GHz)工作。通过利用开槽技术和高介电常数材料,天线体积最小化至47.4 mm,并通过特征模方法在WMTS频段获得了圆极化。在仿真中构建了人体组织的三层物理模型,并在测量中使用了生物凝胶和碎猪肉。测量得到的峰值增益分别为-20.85 dBi(1.4 GHz)和-22.15 dBi(2.45 GHz)。在WMTS频段测量得到的有效轴比带宽为170 MHz(1.33 - 1.50 GHz,12.0%),在ISM频段的阻抗带宽为390 MHz(2.21 - 2.60 GHz,16.2%)。在1.4 GHz和2.45 GHz时,最大1 g平均比吸收率值分别为376 W/Kg和318 W/Kg,符合IEEE C95.1 - 1999标准。此外,当1.4 GHz和2.4 GHz的通信链路亲和力超过20 dB时,收发器范围分别达到8.2 m和9.7 m。该天线可用于可植入无线遥测系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3767/10674459/ca4c0d98473b/sensors-23-09094-g001.jpg

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