评估用于3D打印的低轮廓波束转向传输阵列的不同单块介质实现

Jorge Teixeira, Sérgio Matos, Jorge R. Costa, J. Felício, C. Fernandes
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引用次数: 1

摘要

发射阵列(TAs)是使用毫米波的高增益可操纵天线的一种经济有效的解决方案。对于某些应用来说,这些天线可以成为非常紧凑和灵活的相控阵的可行替代品。主要动机是降低与相控阵的复杂和有损馈电网络相关的高成本——这是瞄准大众市场技术的一个基本因素。将TAs的灵活性与3D打印相结合,可以进一步提高这些天线的低成本潜力。这项工作的重点是由单一介电材料组成的孔径,与经济实惠的3D打印技术兼容,熔丝沉积建模(FDM)。然而,与印刷电路板(PCB) TAs相比,由此产生的孔径将更厚,损耗更高。我们表明,尽管存在这些限制,TAs的电介质实现即使在要求苛刻的设计中也表现良好。我们提出了几种电介质实现的TA设计,能够进行宽机械波束扫描(上49度),在30 GHz时具有低轮廓(F/D=0.34)和26 dBi最大增益。我们评估了这种天线的性能如何受到在介电块中制作的T A相位校正方式的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing different monoblock dielectric implementations of a low profile beam steering Transmitarray for 3D printing
Transmit-arrays (TAs) can be a cost-effective solution for high gain steerable antennas using millimeter waves. For some applications these antennas can be a viable alternative to the extremely compact and agile phased-arrays counterpart. The main motivation is to reduce the high costs associated with the complex and lossy feeding networks of phased arrays - a fundamental factor when aiming for mass-market technology. Combining the flexibility of TAs with 3D printing can further enhance the low-cost potential of these antennas. This work focuses on apertures composed by a single dielectric material compatible with the affordable 3D printing technique, Fuse Deposition Modelling (FDM). However, the resulting aperture will be thicker and have higher losses comparing with printed circuit board (PCB) TAs. We show that, despite these limitations, the dielectric implementation of TAs performs well even for demanding designs. We present several dielectric realizations of a TA design capable of wide mechanical beam scanning (up 49 degrees) with a low profile (F/D=0.34) and 26 dBi maximum gain at 30 GHz. We assess how the performance of this antenna is affected by the way that the T A phase correction is crafted in the dielectric block.
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