Design and experimental demonstration of a beam scanning lens antenna

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 a...

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Veröffentlicht in:Review of scientific instruments 2022-08, Vol.93 (8), p.084703-084703
Hauptverfasser: Zhao, Xu-hao, Liu, Meng-qi, Sun, Yun-fei, Xu, Liang, Zhang, Qiang, Yuan, Cheng-Wei, Zhang, Jian-de
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Sprache:eng
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Zusammenfassung: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 (SF6). 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.
ISSN:0034-6748
1089-7623
DOI:10.1063/5.0091152