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首页> 外文期刊>International journal of antennas and propagation >Wearable Fabric Reconfigurable Beam-Steering Antenna for On/Off-Body Communication System
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Wearable Fabric Reconfigurable Beam-Steering Antenna for On/Off-Body Communication System

机译:上/下体通信系统的可穿戴结构可重构波束控制天线

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This paper presents a comparison of on-body performances between omnidirectional (loop antenna) and reconfigurable beam-steering antennas. Both omnidirectional and reconfigurable antennas were manufactured on the same fabric substrate and operated at the frequency band of the WLAN 802.11a (5.725–5.85 GHz). The reconfigurable antenna was designed to steer the beam directions. In order to implement the beam-steering capability, the antenna used two PIN diodes. The maximum beam directions of three states (states 0, 1, and 2) were steerable in theYZ-plane (h=2°, 28°, and 326°, resp.). The measured peak gains were 5.9–6.6 dBi and the overall half power beam width (HPBW) was 102°. The measured results of total radiated power (TRP) and total isotropic sensitivity (TIS) indicated that the communication efficiency of the reconfigurable beam steering antenna was better than that of the loop antenna. When the input power was 0.04 W (16 dBm), the simulated specific absorption rate (SAR) values of the reconfigurable beam steering antenna on the body were less than 0.979 W/kg (1 g tissue) in all states, satisfying the SAR criteria of the US.
机译:本文介绍了全向(环形天线)和可重构波束控制天线之间的人体性能比较。全向天线和可重新配置的天线均在同一织物基板上制造,并在WLAN 802.11a的频带(5.725–5.85 GHz)下工作。可重新配置的天线旨在控制波束方向。为了实现波束控制能力,天线使用了两个PIN二极管。三种状态(状态0、1和2)的最大光束方向可在YZ平面(h = 2°,28°和326°,分别为)中操纵。测得的峰值增益为5.9–6.6 dBi,总的半功率光束宽度(HPBW)为102°。总辐射功率(TRP)和总各向同性灵敏度(TIS)的测量结果表明,可重构波束控制天线的通信效率优于环形天线。当输入功率为0.04 W(16 dBm)时,在所有状态下,可重配置波束控制天线在人体上的模拟比吸收率(SAR)值在所有状态下均小于0.979 W / kg(1 g组织),满足SAR标准美国。

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