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A Method of Designing a Dual-Band Sector Ring Microstrip Antenna and Its Application

机译:双频扇形环形微带天线的设计方法及其应用

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摘要

A dual-band sector ring microstrip antenna operating at the TM11 and TM02 modes is analyzed and then designed in this communication. Unlike previous analyses that use only cavity model or transmission line, a simpler analysis using both models is proposed. Accordingly, several closed equations are derived. Such equations determine the relationship among three important units of construction, namely the radii, the angle, and its operating frequencies, and with the operating factors in a dual-band sector ring patch. The errors between the proposed method and the cavity model are acceptable. The field and radiation patterns of the sector ring patch are also discussed. In addition, these analyses and equations are applied to design a dual-band sector ring microstrip antenna for WLAN. A novel coupling sector ring patch is then proposed to improve the performance of the antenna. The experimental results are in good agreement with the analyses and the simulations. The impedance bandwidths of the antenna are about 40 and 900 MHz with consistent broadside radiation patterns at 2.4 and 5.5 GHz band. Additionally, their measured average gains are about 5.1 and 6.3 dBi, respectively.
机译:在此通信中分析并设计了工作在TM11和TM02模式下的双频段扇形环形微带天线。与先前仅使用空腔模型或传输线的分析不同,提出了使用两种模型的更简单分析。因此,导出了几个封闭方程。这样的方程式确定了三个重要结构单元之间的关系,即半径,角度及其工作频率,以及双频带扇形环斑片中的工作因子。所提出的方法与空腔模型之间的误差是可以接受的。还讨论了扇形环斑片的场和辐射图。此外,这些分析和方程式可用于设计用于WLAN的双频段扇形环形微带天线。然后,提出了一种新颖的耦合扇形环补丁,以改善天线的性能。实验结果与分析和仿真吻合良好。天线的阻抗带宽约为40和900 MHz,在2.4和5.5 GHz频段具有一致的宽边辐射方向图。此外,它们测得的平均增益分别约为5.1和6.3 dBi。

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