Ni Chao, Wen Biyang, Wu Weijun, Ren Ping
Radar and Signal Processing Laboratory, Electronic Information School, Wuhan University, Wuhan 430064, China.
Science and Technology on Electromagnetic Compatibility Laboratory, China Ship Development and Design Centre, Wuhan 430060, China.
Sensors (Basel). 2022 Apr 5;22(7):2780. doi: 10.3390/s22072780.
A filtering slot antenna with a simple structure combination using characteristic mode analysis (CMA) is proposed. To realize filtering characteristics, characteristic magnetic currents of line and ring slots are analyzed and designed. Then, the folding-line slot and double-ring slot are selected to realize radiation null separately and combined to construct the basic slot antenna. By properly exciting the selected characteristic modes, a wide filtering bandwidth and a stable gain are obtained. To validate the design process, a prototype antenna with a finite ground plane of about 1.1 λ × 1.1 λ is designed and fabricated. Simulated and measured results agree well, which both show a sharping roll rate in the lower and higher frequency and a flat gain realization in the pass band. The filtering bandwidth is 32.7%, the out-of-band suppression level at the higher frequency is over 20 dB, and the gain in the working frequency varies from 3.9 to 5.2 dB.
提出了一种采用特征模式分析(CMA)的具有简单结构组合的滤波缝隙天线。为实现滤波特性,对线缝隙和环形缝隙的特征磁流进行了分析和设计。然后,选择折线缝隙和双环缝隙分别实现辐射零点,并将它们组合以构建基本缝隙天线。通过适当地激励所选特征模式,可获得宽滤波带宽和稳定增益。为验证设计过程,设计并制作了一个有限接地平面尺寸约为1.1λ×1.1λ的原型天线。仿真和测量结果吻合良好,均在低频和高频呈现出陡峭的滚降率,并在通带实现了平坦增益。滤波带宽为32.7%,高频处的带外抑制水平超过20 dB,工作频率范围内的增益在3.9至5.2 dB之间变化。