Optimized wideband horn antennas of high gain and directivity

E. Palantei, L. R. Emakarim, A. Nugraha, N. K. Subaer
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引用次数: 2

Abstract

Several horn antennas designed to operate at various frequencies including ISM bands (433 MHz, 0.9, 2.5, 3.5 and 5 GHz) and 1.8 GHz, respectively, are discussed. The preliminary construction of these antennas was firstly implemented through numerical computation using the available HFSS 11 optimizer tools. The optimization process was done by simply varying the size and angle of flares. The best design of each horn prototype was achieved for the setting of flares size and angle that contributed to the optimum value of S11, impedance bandwidth, gain and directivity. Other horn parameters such as waveguide width, length and height are kept constant. The fabrication and experimental testing were performed in Telematics Laboratory (UNHAS). This paper presents the numerical and experimental results of those processes. These include the impact of flares angle variations to the horn properties. Some modifications of horn antennas such as double and quad ridges, both linear and arc-circle forms and horn with cavity back, are also outlined.
优化宽带喇叭天线的高增益和指向性
几个喇叭天线设计工作在不同的频率,包括ISM频段(433 MHz, 0.9, 2.5, 3.5和5 GHz)和1.8 GHz分别进行了讨论。利用现有的hfss11优化工具,通过数值计算实现了这些天线的初步构建。优化过程通过简单地改变耀斑的大小和角度来完成。对每个喇叭原型进行了最佳设计,以确定耀斑尺寸和角度,从而获得S11、阻抗带宽、增益和指向性的最佳值。其他喇叭参数如波导宽度、长度和高度保持不变。在远程信息处理实验室(UNHAS)进行了制造和实验测试。本文给出了这些过程的数值和实验结果。其中包括耀斑角度变化对喇叭性能的影响。对喇叭天线的一些改进,如双脊和四脊,线性和圆弧圆形式以及带腔背的喇叭进行了概述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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