多单元收发辐射器孔径匹配的可能性研究

Y. Rusov, S. S. Krapivina
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摘要

目前,具有空间激励的孔径天线,如反射面天线和相控阵天线,在雷达中得到了广泛的应用。该天线的组合物包括辐照体,该辐照体可制成辐照体的小元件阵列的形式,以形成一组必要的辐射图案。通常使用单脉冲辐射器,它可以形成全方向和差方向。当使用基于波导部件的辐照器时,在其孔径内安装角状或波导开口端的散热器。四角和十二角波导辐射器被广泛使用。当用作收发天线的一部分时,这种辐照器的主要电气特性之一是发射和接收路径的隔离。发射和接收辐射体孔径的匹配对其波导通道的隔离有重要影响。由于辐射体的横向尺寸较小,以波导开口端的形式存在,如果不使用额外的匹配元件,就不可能获得波导通道的高度隔离。本文的任务是研究波导多单元辐射器孔径匹配对其发射和接收通道隔离的影响,以及其辐射器的匹配方式。本文考虑了一个四角辐照器,其孔径包含方形波导开口端形式的辐照器。每个散热器都具有使用可用技术工艺制造产品所需的半径。为了与发射极相匹配,在其内部安装了一个介电板。在研究过程中,平板的厚度及其相对于孔径平面的位置发生了变化。介绍了以聚四氟乙烯、聚乙烯和ST-4材料为基材,以二氧化钛填充聚合物为基材的散热器配板的特点。所提出的将多元件辐照体的开口与横向发射器尺寸为0.68 λ (λ为与工作频带平均频率相对应的自由空间中的波长)相匹配的方法使得在高达3%的频带内将接收和发射波导通道的隔离度提高至少4db成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research of the Possibilities of Matching the Multi-element Receiving-Transmitting Irradiator Aperture
Currently, aperture antennas with spatial excitation, such as reflector antennas and phased array antennas, are widely used in radar. The composition of such an antenna includes an irradiator, which can be made in the form of a small-element array of radiators to form a set of necessary radiation patterns. Monopulse irradiators are often used, which form both total and difference directional patterns. When performing an irradiator based on waveguide parts, radiators in the form of horns or open ends of waveguides are installed in its aperture. Waveguide irradiators with four and twelve horns are widely used. One of the main electrical characteristics of such an irradiator when used as part of a receiving-transmitting antenna is the isolation of the transmitting and receiving paths. Matching the aperture of the transmitting and receiving irradiator has a significant effect on the isolation of its waveguide channels. With small transverse dimensions of the radiators in the form of open ends of waveguides, it is not possible to obtain high isolation of waveguide channels without the use of additional matching elements. The task of research the effect of matching the aperture of a waveguide multi-element irradiator on the isolation of its transmitting and receiving channels, as well as the ways of matching its radiators, is set.The article considers a four-horn irradiator, the aperture of which contains radiators in the form of open ends of a square waveguide. Each radiator has the radius rounding required for the manufacture of the product using the available technological processes. To match the emitter, a dielectric plate is installed inside it. During the research the thickness of the plate and its location relative to the aperture plane changed. The characteristics of matching the radiators with a plate made of teflon, polyethylene and ST-4 material based on polymers filled with titanium dioxide are presented.The proposed method of matching the opening of a multi-element irradiator with a transverse emitter size of 0,68λ (λ is the wavelength in free space corresponding to the average frequency of the operating band) makes it possible to improve the isolation of the receiving and transmitting waveguide channels by at least 4 dB in the frequency band of up to 3%.
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