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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Theory and Experiment of UWB Archimedean Conformal Spiral Antennas
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Theory and Experiment of UWB Archimedean Conformal Spiral Antennas

机译:UWB阿基米德共形螺旋天线的理论与实验

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摘要

A conformal UWB Archimedean spiral antenna on a dielectric hemisphere is theoretically and experimentally investigated. The analysis method, design, and optimization of this type of spherical antennas is performed using an efficient spatial domain method of moments in conjunction with triangular basis functions and asymptotic Green's functions. A special conformal mapping is used to enhance the impedance bandwidth and axial ratio (AR) bandwidth for a circularly polarized spherical spiral antenna. Emphasis is given to the efficient asymptotic approach in spherical multilayered media. To validate the theory, a UWB leaky-wave conformal spiral antenna was designed, manufactured, and tested. The measured results indicate a pretty wideband behavior for this antenna starting from 1.7 to 6 GHz (1.8 octaves) in its input impedance responses. The circular polarization is maintained over 1.26 octave with less than 3 dB AR.
机译:理论上和实验上研究了电介质半球上的保形UWB阿基米德螺旋天线。这种类型的球形天线的分析方法,设计和优化是结合三角形基函数和渐近格林函数使用有效的矩空间域方法进行的。特殊的共形映射用于增强圆极化球形螺旋天线的阻抗带宽和轴向比率(AR)带宽。重点介绍了球形多层介质中的有效渐近方法。为了验证该理论,设计,制造和测试了UWB泄漏波保形螺旋天线。测量结果表明,该天线在其输入阻抗响应中从1.7到6 GHz(1.8八度)开始具有相当宽的宽带性能。圆极化保持在1.26倍频程以上,AR小于3 dB。

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