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Reduced-Size Double-Shell Lens Antenna With Flat-Top Radiation Pattern for Indoor Communications at Millimeter Waves

机译:用于毫米波室内通信的具有平顶辐射方向图的尺寸减小的双壳透镜天线

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摘要

We investigate the capabilities of reduced-size integrated lens antennas to produce flat-top radiation patterns for broadband wireless communication systems at millimeter waves. The main challenge consists in controlling accurately the lens radiation performance over a broad frequency band while reducing its size; this constitutes a difficult task since producing highly shaped beams usually leads to oversized lens antennas. The design procedure is based on the geometrical optics/physical optics method (GO/PO), and the antenna characteristics are confirmed by full-wave simulations since the antenna size is only a few wavelengths. Our numerical results demonstrate that one anti-reflection coating is necessary even if the lens is made in a low-permittivity material (Rexolite). The resulting double-shell dielectric lens antenna has been fabricated and measured. The experimental results are in very good agreement with the simulations, and the radiation characteristics are stable over a 14% relative bandwidth, which is enough for broadband communications at millimeter waves.
机译:我们研究了减小尺寸的集成透镜天线为毫米波宽带无线通信系统产生平顶辐射方向图的能力。主要挑战在于在减小透镜尺寸的同时,在宽频带上准确控制透镜的辐射性能。这是一项艰巨的任务,因为产生高度成形的波束通常会导致透镜天线过大。设计过程基于几何光学/物理光学方法(GO / PO),并且由于天线尺寸仅为几个波长,因此通过全波仿真确认了天线特性。我们的数值结果表明,即使透镜是由低介电常数的材料(Rexolite)制成的,也需要一层抗反射涂层。所得到的双壳介电透镜天线已经制造和测量。实验结果与仿真非常吻合,辐射特性在14%的相对带宽上保持稳定,这足以在毫米波下进行宽带通信。

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