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A Scanning Angle Adjustment Method for Array-Fed Lens Antenna Systems

机译:阵列送料透镜天线系统的扫描角度调整方法

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With the ability to increase the gain of the millimeter-wave antenna system effectively, lenses have attracted wide attention. Researchers proposed a large number of lens-based array systems. When each array element works alone, the system can transmit beams in different directions. However, it is difficult to adjust the scanning angle flexibly. In this letter, we propose a method to synthesize the radiation pattern of the lens-array system, which can flexibly adjust the scanning angle by weighted array elements. First, we derive an approximate mathematical model of the lens-array system. Then, the influence of the weighting coefficients on the far-field radiation pattern of the system is analyzed. By setting coefficients as the optimization parameters and combining it with the desired beampattern, we establish an optimization model. Then we optimize the coefficients. Full-wave simulation results performed by CST studio and measured results demonstrate that the proposed method can approach the desired radiation pattern by the optimized coefficients. What's more, measured results show that the proposed method is suitable for wideband signals. Hence, the presented method can flexibly adjust the scanning angle.
机译:有能力有效地提高毫米波天线系统的增益,镜片引起了广泛的关注。研究人员提出了大量基于镜头的阵列系统。当每个数组元素单独工作时,系统可以在不同方向上传输波束。但是,难以灵活地调节扫描角度。在这封信中,我们提出了一种方法来合成镜头阵列系统的辐射图案,其可以灵活地调节加权阵列元件。首先,我们推导了镜头阵列系统的近似数学模型。然后,分析了加权系数对系统的远场辐射图案的影响。通过将系数设置为优化参数并将其与所需的波束模式组合,我们建立了优化模型。然后我们优化系数。 CST工作室和测量结果执行的全波模拟结果表明,所提出的方法可以通过优化的系数接近所需的辐射图案。更重要的是,测量结果表明,所提出的方法适用于宽带信号。因此,所提出的方法可以灵活地调整扫描角度。

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