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Aperture-Coupled Frequency and Patterns Reconfigurable Microstrip Stacked Array Antenna

机译:孔径耦合的频率和方向图可重构微带堆叠阵列天线

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摘要

This paper investigates a novel structure of a reconfigurable microstrip antenna integrated with the aperture coupling technique which can reduce spurious radiation pattern with stacked patch in order to enhance the gain and bandwidth performance. The antenna design implements a new concept of the frequency reconfigurability methods applying in an aperture-coupled technique. Four PIN diode switches named as were used to activate the selected aperture slots on the ground, thus resulting in two different operating frequencies either at 2.6 or 3.5 GHz. Meanwhile, an additional four PIN diode switches named , positioned at the four L-stub elements were used to turn the patterns capabilities while maintaining the frequencies. The beam angle of the antenna can be controlled with turning and alternately in order to activate selected numbers of stacked radiating patches, either the two upper patches or two lower patches. With six cases of the switches configuration, the antenna has the capability to change its patterns with its beam directed at , , or at 2.6 GHz or at , , or at 3.5 GHz.
机译:本文研究了一种与孔径耦合技术集成的可重构微带天线的新型结构,该结构可以减少带有堆叠贴片的杂散辐射图,从而提高增益和带宽性能。天线设计实现了在孔耦合技术中应用的频率可重构性方法的新概念。使用四个名为的PIN二极管开关来激活地面上选定的光圈插槽,从而产生2.6或3.5 GHz的两个不同的工作频率。同时,位于四个L型短截线元件上的另外四个名为的PIN二极管开关用于在保持频率的同时切换模式功能。天线的波束角可以旋转控制,也可以交替控制,以激活选定数量的堆叠的辐射贴片,即两个上贴片或两个下贴片。在六种开关配置情况下,天线可以改变其方向图,使其波束指向,或2.6 GHz或,或3.5 GHz。

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