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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >S-shaped planar antenna with 45°tilted bidirectional radiation pattern for motorcycle helmets
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S-shaped planar antenna with 45°tilted bidirectional radiation pattern for motorcycle helmets

机译:S形平面天线,带45°倾斜的双向辐射图案,用于摩托车头盔

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摘要

An S-shaped planar antenna (SPA) with a bidirectional radiation pattern and beam tilt characteristic is proposed to achieve maximum communication distance for helmet applications. The proposed SPA is comprised of an S-shaped radiation strip (consisting of a microstrip meander line and two main arms with two inverted L-shaped parasitic elements) and a rectangular ground plane, where a simplified microstrip power divider is introduced by modifying the feed structure in the center of the SPA, such that the S-shaped radiation strip works in the second resonant mode. The proposed SPA generates a tilted beam in the E-plane with an angle of 45°, which is attributed to the obliquely staggered arms of the antenna at a distance. By introducing inverted L-shaped parasitic elements at the end of the two arms, the directivity of the bidirectional radiation pattern can be further improved, thereby increasing the antenna gain. The working principle is analyzed theoretically, and the effects of the antenna structural parameters on the radiation pattern are also analyzed. The experimental results indicate that the 3∶1 VSWR impedance bandwidth is 120 MHz, with a realized peak gain of 1.5 dBi at 2.45 GHz. The proposed antenna is designed for real-world applications, allowing the antenna to be obliquely installed while keeping the peak gain direction horizontal for maximum communication distance.
机译:提出具有双向辐射图案和光束倾斜特性的S形平面天线(SPA)以实现用于头盔应用的最大通信距离。所提出的水疗中心由S形辐射带(由微带曲折线和具有两个具有两个倒L形寄生元​​件的主臂组成)和矩形接地平面组成,其中通过修改进料来引入简化的微带电力分频器在水疗中心的中心结构,使得S形辐射带在第二谐振模式下工作。所提出的水疗中心在E平面中产生倾斜的光束,角度为45°,其归因于天线的倾斜交错的臂。通过在两个臂的末端引入倒的L形寄生元​​件,可以进一步改善双向辐射图案的方向性,从而增加天线增益。理论上分析了工作原理,并分析了天线结构参数对辐射图案的影响。实验结果表明,3:1 VSWR阻抗带宽为120 MHz,实现了2.45GHz的1.5 dBi的实现峰值增益。所提出的天线专为真实的应用而设计,允许天线倾斜地安装,同时保持峰值增益方向以实现最大通信距离。

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