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Additive Manufactured 3:1 Bandwidth Dual-Polarized Range Antenna

机译:添加剂制造3:1带宽双极化范围天线

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A family of 3:1 Dual-Polarized Antennas has been developed for use in near-field ranges as the probe or range antenna and for use as a Compact Antenna Test Range (CATR) feed [1]. Key development parameters of the antenna are: a wideband impedance match to the coaxial feed line, E and H-plane 1 dB beam widths in excess of 30 degrees, −25 dB on axis cross-polarization, minimum polarization tilt and a phase center that varies over a small region near the aperture. To accomplish these design parameters, a family of range antennas has been developed and previously introduced [1]. Two versions of the antenna have been manufactured and tested for performance. A 2–6 GHz version has been developed using traditional machining techniques and a 6–18 GHz version has been produced using additive manufacturing (3D printing) techniques. In this paper, we focus on the performance of the 6–18 GHz antenna produced using additive manufacturing. The measured performance of the antenna will be presented and compared to previous simulation. The advantages of additive manufacturing for this type antenna will be discussed. Finally, the applicability of the antenna as a CATR feed and its use in near-field scanning will be discussed.
机译:为3:1的双极化天线的家庭开发用于近场范围作为探头或范围天线,用作紧凑的天线测试范围(CATR)饲料[1]。天线的关键开发参数是:宽带阻抗与同轴馈电线,E和H平面1 dB波束宽度超过30度,轴串联的-25 dB,最小偏振倾斜和相位中心在孔径附近的一个小区域上变化。为了实现这些设计参数,已经开发了一系列范围天线,并介绍了[1]。已经制造和测试了两种版本的天线以进行性能。使用传统的加工技术开发了2-6 GHz版本,并使用了6-18 GHz版本使用添加剂制造(3D打印)技术。在本文中,我们专注于使用添加剂制造生产的6-18 GHz天线的性能。将呈现天线的测量性能并与之前的模拟进行比较。将讨论这种天线的添加剂制造的优点。最后,将讨论天线作为CATR饲料的适用性及其在近场扫描中的应用。

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