维持lda -宽带-偶极子混合天线对称性的拓扑结构

J. Mclean
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引用次数: 2

摘要

本文系统地介绍了混合lda -宽带偶极子天线(混合天线)的拓扑结构,并对其提供对称响应的能力进行了评估,这是最近标准中定义和要求的。混合天线的对称特性与本征无限平衡、扼流圈结构和宽带偶极子匹配变压器(如果有的话)有根本关系。一般来说,结合匹配变压器的混合天线,如果变压器是有效的中心抽头,则更加对称。更具体地说,在采用阻抗匹配变压器的混合天线中,可以通过低阻抗负载将和端口连接到对称扼流圈布置的中心,这是有利的。本文给出了一种混合LPDA-宽带偶极子天线的具体拓扑结构,该天线在LPDA和宽带偶极子之间采用1:4阻抗转换平衡,但同时提供了对称性,使天线满足最新标准的要求。这样既实现了阻抗变换平衡器的优点,又保持了天线的对称性。最后,研究表明,混合天线满足对称条件,即围绕瞄准轴旋转180°相当于源内电相移180°,这种特性是由辐射结构的2倍旋转对称和本征平衡结构的电对称共同获得的。
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Topology for Maintaining Symmetry in Hybrid LPDA-Broadband-Dipole Antennas
Topologies for hybrid LPDA-broadband-dipole antennas (hybrid antennas) are systematically presented and evaluated regarding their ability to provide symmetric response as defined and required in recent standards. The symmetry property of the hybrid antenna is fundamentally related to the intrinsic infinite balun, the choke structure, and the matching transformer for the broadband dipole, if one is employed. In general, hybrid antennas incorporating matching transformers are more symmetric if the transformer is effectively center-tapped. More specifically, in a hybrid antenna employing an impedance matching transformer derived from an equal-delay hybrid, the sum port can be advantageously connected via a low-impedance load to the center of a symmetric choke arrangement. A specific topology for a hybrid LPDA-broadband-dipole antenna is given here which employs a 1:4 impedance transforming balun between the LPDA and broadband dipole but at the same time provides symmetry such that the antenna satisfies the requirements given in recent standards. Thus, the advantages of the impedance transforming balun are realized, but the symmetry of the antenna is maintained. Finally, it is shown that a hybrid antenna satisfies the symmetry requirements if a 180° rotation about the bore sight axis is equivalent to a 180° electrical phase shift in the source and that this behavior is obtained with a combination of 2-fold rotational symmetry in the radiating structure and electrical symmetry in the intrinsic balun structure.
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