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A Broadband Impedance-Matching Method for Microstrip Patch Antennas Based on the Bode-Fano Theory

机译:基于Bode-Fano理论的微带贴片天线宽带阻抗匹配方法

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摘要

Considering the narrow bandwidth of microstrip antennas, but also their applicability in upcoming technologies, this paper addresses the problem of wide-band matching, the theoretical bounds on the matching bandwidth and low-cost and low-complexity matching strategies. In this context the Bode-Fano bounds of single mode, linearly polarized aperture-coupled microstrip antennas is evaluated, optimized and compared to the theoretical bounds on matching bandwidth of other common feeding technologies. A detailed study of the input impedance of aperture-coupled patch antennas shows how to widen the Fano bounds. Based on this, a straight-forward and effective method to optimize the Fano bound is given. After optimization of the antennas input impedance, basic matching techniques can be applied, to exploit the enlarged bandwidth potential. As an example a lambda/4-transformer as matching element is proposed. Design equations and simulation and measurement results of X-band prototypes are given as verification.
机译:考虑到微带天线的窄带宽及其在未来技术中的适用性,本文解决了宽带匹配的问题,匹配带宽的理论界限以及低成本和低复杂度的匹配策略。在这种情况下,对单模,线性极化孔径耦合微带天线的Bode-Fano边界进行了评估,优化,并将其与其他常见馈电技术的匹配带宽的理论边界进行了比较。对孔径耦合贴片天线的输入阻抗的详细研究显示了如何加宽法诺边界。在此基础上,给出了一种简单而有效的优化Fano边界的方法。在优化天线输入阻抗之后,可以应用基本的匹配技术来利用扩大的带宽潜力。作为示例,提出了λ/ 4变压器作为匹配元件。给出了X波段原型的设计方程以及仿真和测量结果作为验证。

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