A microwave radome performance verification gauge

L. Ricardi, X. P. Tran, S. Sutkin
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Abstract

The authors describe a microwave radome gauge (MWRG) for verifying a radome's performance regardless of its size and for a wide range of shapes. The gauge consists of two parts: a microwave coupler and a conducting foil. The radome is placed between these two parts to form a cavity whose resonant frequency is measured. Changes in f/sub 0/ are used to verify its transmission characteristics. The radome is tested piecewide by placing the MWRG at various locations on the surface of the radome and verifying its transmission properties at these locations. A mathematical model of the MWRG based on conventional transmission line theory is described. That is, the radome and the short-circuited connection between the foil and the flange of the coupler are assumed to act as a section of dielectric-loaded waveguide. Analytic results determined that the allowable change in the thickness of the radome core materials and assembly could cause a shift in the resonant frequency up to 0.4%, if only one dimension is in error.<>
一种微波天线罩性能验证计
作者描述了一种微波天线罩测量仪(MWRG),用于验证天线罩的性能,无论其大小和形状范围如何。该仪表由两部分组成:微波耦合器和导电箔。将天线罩置于这两个部分之间,形成一个谐振频率被测量的空腔。用f/sub 0/的变化来验证其传输特性。通过将MWRG放置在天线罩表面的不同位置并验证其在这些位置的传输特性,对天线罩进行了分段测试。在传统传输线理论的基础上,建立了MWRG的数学模型。也就是说,假设天线罩和箔片与耦合器法兰之间的短路连接作为介电负载波导的一部分。分析结果表明,如果只有一维误差,天线罩核心材料和组件厚度的允许变化可能导致谐振频率的偏移高达0.4%。
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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