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Analysis and Design of a Multifunctional Spiral Antenna

机译:多功能螺旋天线的分析与设计

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摘要

The Archimedean spiral antenna is well-known for its broadband characteristics with circular polarization and has been investigated for several decades. Since their development in the late 1950's, establishing an analytical expression for the characteristics of spiral antenna has remained somewhat elusive. This has been studied qualitatively and evaluated using numerical and experimental techniques with some success, but many of these methods are not convenient in the design process since they do not impart any physical insight into the effect each design parameter has on the overall operation of the spiral antenna. This work examines the operation of spiral antennas and obtains a closed-form analytical solution by conformal mapping and transmission line model with high precision in a wide frequency band.Based on the analysis of spiral antenna, we propose two novel design processes for the stripline-fed Archimedean spiral antenna. This includes a stripline feed network integrated into one of the spiral arms and a broadband tapered impedance transformer that is conformal to the spiral topology for impedance matching the nominally-high input impedance of the spiral. A Dyson-style balun located at the center facilitates the transition between guided stripline and radiating spiral modes. Measured and simulated results for a probe-fed design operating from 2 GHz to over 20 GHz are in excellent agreements to illustrate the synthesis and performance of a demonstration antenna. The research in this work also provides the possibility to achieve conformal integration and planar structural multi-functionality for an Unmanned Air Vehicle (UAV) with band coverage across HF, UHF, and VHF. The proposed conformal mapping analysis can also be applied on periodic coplanar waveguides for integrated circuit applications.
机译:阿基米德螺旋天线以其具有圆极化的宽带特性而闻名,并且已经进行了数十年的研究。自从1950年代后期发展以来,建立螺旋天线特性的解析表达式仍然有些遥不可及。已经对此进行了定性研究,并使用数值和实验技术进行了评估,但取得了一些成功,但是这些方法中的许多方法在设计过程中并不方便,因为它们没有对每个设计参数对螺旋整体操作的影响产生任何物理洞察天线。这项工作研究了螺旋天线的工作原理,并通过保形映射和传输线模型在宽频带上以高精度获得了闭合形式的解析解。在对螺旋天线的分析基础上,我们提出了两种新颖的带状线设计方法:美联储阿基米德螺旋天线。这包括一个集成在螺旋臂之一中的带状线馈电网络和一个与螺旋形拓扑共形的宽带锥形阻抗变压器,用于匹配名义上较高的螺旋输入阻抗。位于中心的戴森式平衡-不平衡变换器有助于引导带状线和辐射螺旋模式之间的过渡。在2 GHz至20 GHz以上的探头馈电设计下的测量和仿真结果,以极好的协议证明了演示天线的综合性能。这项工作中的研究还为实现覆盖HF,UHF和VHF的无人飞行器(UAV)的保形整合和平面结构多功能化提供了可能性。所提出的保形映射分析还可以应用于集成电路应用的周期性共面波导。

著录项

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    Chen Teng-Kai;

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  • 年度 2012
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  • 原文格式 PDF
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