一种小型低剖面超宽带宽角扫描紧耦合相控阵天线

    A Compact Low-profile Ultra-wideband Wide-angle Scanning Tightly Coupled Phased Array Antenna

    • 摘要: 为了解决当前相控阵天线在超宽频带范围内大角度扫描的同时无法兼顾低剖面、一体化、易于集成的难题,本文设计了一款小型低剖面的紧耦合超宽带宽角扫描相控阵天线。首先,设计出一种新型微带渐变馈电巴伦,此结构可以在实现宽带范围内阻抗变换的同时避免在天线下方加载复杂的匹配网络;其次,在原有对拓结构的基础上添加金属通孔以引入寄生耦合贴片,可弥补传统对拓辐射结构提供耦合分量的不足; 另外,单天线元上方加载具有特定长度的金属条作为天线的宽角匹配层,可实现天线到自由空间的阻抗匹配,对比多层介质块加载可知,此宽角匹配层与天线主体共用同一块介质板。天线单元口径14.6 mm(0.29 λh),剖面为27 mm(0.54 λh),天线尺寸小于现有天线,实现了天线的低剖面、轻量化。仿真结果表明,所提出的天线单元可工作在2 GHz~6 GHz频段,且在E/H平面扫描到60°时,单元有源驻波比均低于2.5;最后,对单元组成8×8阵列进行加工实测,实测结果验证了以上设计。

       

      Abstract: To address the challenges of phased array antennas, which cannot simultaneously achieve low profile, integration, and easy integration while working in ultra-wide band and scanning at large angles, this article designs a compact low-profile tightly-coupled ultra wide band wide-angle scanning phased array antenna. Firstly, a novel microstrip tapered feed balun is designed. This structure can achieve impedance transformation within a wide bandwidth while avoiding loading complex matching networks beneath the antenna. Secondly, metal vias are added to introduce parasitic coupling patches on the basis of the antipodal structure, which can compensate for the shortage of traditional antipodal radiation structures in providing coupling components. Besides, metal strips of specific length are loaded above the antenna element to serve as the wide-angle matching layer, achieving impedance matching from the antenna to free space. Compared with multi-layer dielectric loading, this wide-angle matching layer can share the same dielectric plate with the radiation structure of the antenna. The antenna unit aperture is 14.6 mm (0.29 λh) and profile is 27 mm (0.54 λh), making its size smaller than existing antennas and realizing a low-profile and lightweight design for the antenna. The simulation results show that the proposed antenna unit can operate in the 2 GHz~6 GHz frequency band, and the active VSWR of the unit is lower than 2.5 when scanned to 60° in the E/H plane. Finally, an 8×8 array composed of antenna elements was fabricated and measured, and the measured results verify the above design.

       

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