Zhao Xu-Hao, Liu Meng-Qi, Sun Yun-Fei, Xu Liang, Zhang Qiang, Yuan Cheng-Wei, Zhang Jian-de
Naval Research Institute, Shanghai 200000, China.
College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China.
Rev Sci Instrum. 2022 Aug 1;93(8):084703. doi: 10.1063/5.0091152.
A beam scanning antenna based on an all-metal lens is presented for high-power microwave (HPM) application in this paper. This design includes a feed antenna and two layers of different all-metal lenses, whose prototypes operating at 14.25 GHz have been successfully designed and fabricated with an aperture radius of 300 mm. A full transmission phase range of 360° can be achieved with a transmission efficiency of over 99% by rotating the cross-slot on the lens elements. The results of the low-power tests depict that the designed antenna can realize a beam scanning range of 120° revolving cone angle with the side lobe below -10 dB and the reflection coefficient less than -16 dB. The high-power tests demonstrate that the power handling capacity of the antenna is higher than 350 MW in sulfur hexafluoride (SF). In addition, both the designed lenses have a bandwidth of more than 100 MHz. All the merits show that our designed all-metal lens antenna has a great potential to be applied in HPM systems.
本文提出了一种基于全金属透镜的波束扫描天线,用于高功率微波(HPM)应用。该设计包括一个馈源天线和两层不同的全金属透镜,其工作在14.25GHz的原型已成功设计并制造出来,孔径半径为300mm。通过旋转透镜元件上的十字槽,可以实现360°的全传输相位范围,传输效率超过99%。低功率测试结果表明,所设计的天线可以实现120°旋转锥角的波束扫描范围,旁瓣低于-10dB,反射系数小于-16dB。高功率测试表明,该天线在六氟化硫(SF)中的功率处理能力高于350MW。此外,所设计的两个透镜都具有超过100MHz的带宽。所有这些优点表明,我们设计的全金属透镜天线在HPM系统中具有很大的应用潜力。