Anim Kyei, Danuor Patrick, Park Seong-Ook, Jung Young-Bae
Electrical and Computer Engineering Department, Drexel University, Philadelphia, PA 19104, USA.
Electronics Engineering Department, Hanbat National University, Daejeon 34158, Korea.
Sensors (Basel). 2021 Dec 30;22(1):252. doi: 10.3390/s22010252.
In this paper, a high efficiency broadband planar array antenna is developed at X-band for synthetic aperture radar (SAR) on small satellites. The antenna is based on a multi-layer element structure consisting of two dielectric substrates made of Taconic TLY-5 and three copper layers (i.e., the parasitic patch (top layer), the active patch (middle layer), and the ground plane (bottom layer)). The parasitic patch resides on the bottom surface of the upper TLY-5 substrate while the active patch is printed on the top surface of the lower substrate. A Rohacell foam material is sandwiched between the top layer and the middle layer to separate the two dielectric substrates in order to achieve high directivity, wideband, and to keep the antenna weight to a minimum as required by the SAR satellite application. To satisfy the required size of the antenna panel for the small SAR satellite, an asymmetric corporate feeding network (CFN) is designed to feed a 12 × 16 planar array antenna. However, it was determined that the first corporate feed junction at the center of the CFN, where higher amplitudes of the input signal are located, contributes significantly to the leaky wave emission, which degrades the radiation efficiency and increases the sidelobe level. Thus, a suspended microstrip slab, which is simply a wide and long microstrip line, is designed and positioned on the top layer directly above that feed junction to prevent the leaky waves from radiating. The experimental results of the antenna show good agreement with the simulated ones, achieving an impedance bandwidth of 12.4% from 9.01 to 10.20 GHz and a high gain above 28 dBi. The antenna efficiency estimated from the gain and directivity eclipses 51.34%.
本文针对小卫星合成孔径雷达(SAR)在X波段研制了一种高效宽带平面阵列天线。该天线基于一种多层单元结构,由两块Taconic TLY - 5介质基板和三层铜层(即寄生贴片(顶层)、有源贴片(中间层)和接地平面(底层))组成。寄生贴片位于上层TLY - 5基板的底面,而有源贴片印刷在下层基板的顶面。在顶层和中间层之间夹有一层Rohacell泡沫材料,用于分隔两块介质基板,以实现高方向性、宽带,并根据SAR卫星应用的要求将天线重量降至最低。为满足小型SAR卫星天线面板的所需尺寸,设计了一种非对称共形馈电网络(CFN)来馈电一个12×16的平面阵列天线。然而,已确定CFN中心处的第一个共形馈电节点,即输入信号幅度较高的位置,对漏波辐射有显著贡献,这会降低辐射效率并增加旁瓣电平。因此,设计了一种简单的宽长微带线——悬浮微带平板,并将其放置在该馈电节点正上方的顶层,以防止漏波辐射。天线的实验结果与模拟结果吻合良好,在9.01至10.20 GHz频段实现了12.4%的阻抗带宽和高于28 dBi的高增益。根据增益和方向性估算的天线效率超过51.34%。