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3-D Coverage Beam-Scanning Antenna Using Feed Array and Active Frequency-Selective Surface

机译:使用馈源阵列和有源频率选择表面的3D覆盖波束扫描天线

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摘要

This paper presents the design of a smart antenna that can achieve 3-D beam-scanning coverage. The antenna consists of a novel planar feed array and a cylindrical active frequency-selective surface (AFSS). First, an array fed metallic reflector is studied as a reference antenna to validate the beam-scanning characteristics in the elevation plane. Then, the AFSS is assessed through simulation and measurement results. Finally, the complete structure containing the planar collinear array and the AFSS is analyzed. A prototype at S-band has been designed, manufactured, and measured. The resulting antenna is shown to be able to operate at the 2.4-2.5 GHz frequency band and switch beams in both the azimuth and elevation planes. In the azimuth plane, the proposed antenna is capable of sweeping beams toward different directions to cover a full range of 360°. In the elevation plane, it can achieve beam steering within an angle range of +16°/ - 15°. The measured maximum gain of the antenna is 9.2 dBi. This is the first report of a low-cost 3-D coverage beam-scanning antenna based on AFSS.
机译:本文介绍了可以实现3-D波束扫描覆盖的智能天线的设计。该天线由一个新颖的平面馈电阵列和一个圆柱形有源频率选择表面(AFSS)组成。首先,研究了阵列馈电金属反射器作为参考天线,以验证仰角平面中的波束扫描特性。然后,通过仿真和测量结果评估AFSS。最后,分析了包含平面共线阵列和AFSS的完整结构。已经设计,制造和测量了S波段的原型。所显示的天线能够在2.4-2.5 GHz频段工作,并且可以在方位角和仰角平面上切换波束。在方位平面中,建议的天线能够将波束朝不同的方向扫掠以覆盖360°的整个范围。在仰角平面中,它可以在+ 16°/-15°的角度范围内实现光束转向。测得的天线最大增益为9.2 dBi。这是基于AFSS的低成本3D覆盖波束扫描天线的首次报道。

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