低成本的方形截面螺旋天线

M. C. Britton, J. Wight, P. Strickland
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引用次数: 3

摘要

方形和其他横截面螺旋天线与用于卫星通信和其他应用的传统圆形横截面螺旋天线相比具有几个优点。构成方形截面螺旋天线的线段可以很容易地支撑在一种结构上,这种结构可以廉价地设计和制造,即使是可变截面或螺距的螺旋天线。这种结构具有最小的导体-介电邻近的额外优点,从而几乎消除了由于介电负载而产生的不必要的频移和损耗。线性单元也非常适合使用矩量法进行模拟,其中圆柱导体几乎总是标准单元。其他多边形截面允许一些改进轴向比性能的螺旋天线。讨论了螺旋天线的理论和发展历史,提出了用于说明圆形和方形螺旋天线相对性能的轴向模式螺旋天线模型。利用矩量法仿真软件包WIPL对这些模型和其他具有其他截面的模型进行了仿真,并对仿真结果进行了讨论。构造并测量了圆形和方形螺旋天线,并测量了螺旋线圈内介电负载的直接影响。这些仿真和测量结果说明了方形和其他非圆形截面用于螺旋天线的性能优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-cost square cross section helical antennas
Square and other cross section helical antennas have several advantages over the conventional circular cross section helical antennas used in satellite communication and other applications. The linear segments which make up a. square cross section helical antenna can be easily supported on a structure which can be cheaply designed and manufactured even for variable cross section or pitch helical antennas. This structure has the additional advantage of having minimal conductor-dielectric proximity, thus virtually eliminating unwanted frequency shift and loss due to dielectric loading. The linear elements are also well suited to simulation using the method of moments, in which cylindrical conductors are nearly always standard elements. Other polygonal cross sections allow some improvement in the axial ratio performance of the helical antennas. The theory and history of helical antennas is discussed, and axial-mode helical antenna models designed to illustrate the relative performance of circular and square helical antennas are presented. Simulations of these models and others with other cross sections were performed using WIPL, a method-of-moments simulation software package, and these simulation results are discussed. Circular and square helical antennas were constructed and measured, and the effects of dielectric loading immediately within the helical winding measured. These simulation and measurement results illustrate the performance advantages of square and other non-circular cross sections for helical antennas.
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