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Design and Characterization of 4×4 Butler Matrix for Switched-Beam Antenna Array

机译:开关梁天线阵列4×4巴特勒矩阵的设计与表征

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As is already known, Butler matrix is one of essential beamforming networks frequently applied for multiple beams. This is due to its characteristics which has high beam crossover level and lossless property. In this paper, a 4×4 Butler matrix is designed and fabricated to be implemented for switched-beam antenna array. It is deployed on an FR4 epoxy dielectric substrate with the thickness of 0.8 mm and the dielectric constant of 4.3. The conductor patch and groundplane use metallic copper with the thickness of 0.035 mm. Some key parameters of Butler matrix such as the amplitude and phase responses are characterized and investigated through simulation and measurement. The characterization results demonstrate that the proposed 4×4 Butler matrix takes the overall size of 136.4 mm × 87.5 mm (2.26λg × 1.45λg) and shows good amplitude and phase performances. The progressive phase difference of −40.52° ± 6.99° and the amplitude of −8.32 ± 1.08 dB were achieved at the operating frequency of 2.4 GHz. Meanwhile, the measured return loss fractional bandwidth of 16.25% could be attained at the frequency range of 2.15 GHz to 2.54 GHz.
机译:如已知的,Butler矩阵是经常应用于多个光束的基本波束形成网络之一。这是由于其具有高光束交叉水平和无损性的特性。在本文中,设计了一个4×4个管矩阵矩阵,以用于开关光束天线阵列。它展开在FR4环氧介电基板上,厚度为0.8mm,介电常数为4.3。导体贴片和研磨机使用金属铜,厚度为0.035mm。 Butler矩阵的一些关键参数,例如幅度和相位响应,并通过模拟和测量研究。表征结果表明,所提出的4×4巴特勒基质的总体尺寸为136.4mm×87.5mm(2.26λ g ×1.45λ. g )显示良好的幅度和相位性能。在2.4GHz的工作频率下实现-40.52°±6.99°和-8.32±1.08dB的渐进相差。同时,测量的回波损耗分数带宽为16.25%,频率范围为2.15 GHz至2.54 GHz。

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