A physically compact quad ridge horn design

Stephen A. Soroka
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引用次数: 22

Abstract

The electrical and mechanical constraints placed on the element design for a very small dual linear polarized broadband phased array has resulted in the development of a physically compact quad-ridge horn antenna. Using its lowest operating frequency, this antenna has an aperture size of1/4\lambda \times 1/4\lambdaand an axial length of1/3\lambda. These dimensions represent a reduction in size of approximately 50% over conventional quad ridge horn antenna designs. With this size reduction however, there was no significant degradation in antenna performance. Specifically, a 3 to 1 operational bandwidth with a maximum VSWR of 3.5 to 1 in the operating band was achieved. Other antenna characteristics are dual polarization, 17 dB minimum isolation between ports, extremely broad pattern shape, and a coaxial feed system which originates from the rear of the antenna. This paper presents both the theoretical and empirical techniques employed throughout the development cycle. Also included are measured data for the original physically compact antenna and a second antenna based on a scaled version of this design.
物理上紧凑的四脊喇叭设计
对于一个非常小的双线极化宽带相控阵元件设计的电气和机械限制导致了物理上紧凑的四脊喇叭天线的发展。使用其最低工作频率,该天线的孔径大小为1/4\lambda \乘以1/4\lambda,轴向长度为1/3\lambda。这些尺寸比传统的四脊喇叭天线设计减少了大约50%的尺寸。然而,随着尺寸的减小,天线性能没有明显的下降。具体而言,实现了3比1的工作带宽,在工作频带中最大驻波比为3.5比1。该天线的其他特性包括双极化、端口之间最小隔离为17 dB、极宽的方向图形状以及从天线后部开始的同轴馈电系统。本文介绍了在整个开发周期中使用的理论和经验技术。还包括原始物理紧凑天线和基于该设计的缩放版本的第二个天线的测量数据。
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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