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Design of a compact, fully-autonomous 433 MHz tunable antenna for wearable wireless sensor applications

机译:设计紧凑,全自动的433 MHz可调天线,用于可穿戴无线传感器应用

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The authors present the design of a tunable 433 MHz antenna that is tailored for wearable wireless sensor applications. This study first presents a detailed analysis of the measured impedance characteristics of a chosen antenna under test (AUT) in varying proximity to a human test subject. Instead of limiting the analysis to the head and hand only, this analysis measures the AUT impedance at varying distances from 11 different body positions. A novel antenna equivalent circuit model is then developed that enables both the free-space and total on-body AUT impedance variation to be rapidly computed using a circuit simulator instead of the requirement for computationally intensive finite-element methods for example. The design and characterisation of a tunable matching network that enables AUT impedance matching for 11 different positions on the human body is then outlined. Finally, a fully-autonomous 433 MHz tunable antenna is demonstrated. The antenna occupies a small printed circuit board area of 51 × 28 mm and is printed on standard FR-4 material with the tuner completely integrated into the antenna itself. Prototype measurements show an improvement of 3.9 dB in power delivery to the antenna for a load voltage standing wave ratio of 17:1, with a maximum matching loss of 0.84 dB and S11 (-10 dB) ≥ 18 MHz for all load conditions.
机译:作者介绍了为可穿戴无线传感器应用量身定制的可调谐433 MHz天线的设计。这项研究首先介绍了在接近人体测试对象的情况下,所选被测天线(AUT)的测量阻抗特性的详细分析。不仅限于仅对头部和手部进行分析,该分析还可以测量距11个不同身体位置不同距离的AUT阻抗。然后,开发了一种新颖的天线等效电路模型,该模型使得可以使用电路模拟器来快速计算自由空间和整个人体上AUT阻抗变化,而不是例如对计算密集型有限元方法的要求。然后概述了可调谐匹配网络的设计和特性,该网络可实现人体11个不同位置的AUT阻抗匹配。最后,演示了一种全自动433 MHz可调天线。天线占用51×28 mm的印刷电路板小面积,并以标准FR-4材料进行印刷,并且调谐器完全集成到天线本身中。原型测量显示,在负载电压驻波比为17:1的情况下,向天线的功率传输改善了3.9 dB,在所有负载条件下,最大匹配损耗为0.84 dB,S11(-10 dB)≥18 MHz。

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