首页> 外文会议>Conference on Detection and Remediation Technologies for Mines and Minelike Targets VII Pt.1, Apr 1-5, 2002, Orlando, USA >Reduced Size Spiral Antenna Design Using Dielectric Overlay Loading for Use in Ground Penetrating Radar and Design of Alternative Antennas Using Vivaldi Radiators
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Reduced Size Spiral Antenna Design Using Dielectric Overlay Loading for Use in Ground Penetrating Radar and Design of Alternative Antennas Using Vivaldi Radiators

机译:用于地面穿透雷达的使用介电叠加负载的小型螺旋天线设计以及使用维瓦尔第辐射器的替代天线设计

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Spiral antennas are one of the common radiators used in ground penetrating radar (GPR). Mine detection is generally performed in a frequency band of interest between 500 MHz to 4 GHz. This paper discusses technical recommendations and R&D performed by Naval Air Warfare Center (NAWC), China Lake, CA , resulting in our best effort spiral design emphasizing highest low band gain while maintaining overall axial ratio purity. This design consisted of a spiral printed on a high dielectric substrate that allowed the antenna to be used at lower frequencies then conventional plastic substrate based two arm spirals of the same diameter. A graded dielectric overlay scheme was employed to facilitate matching to free space on one side, and absorber lined cavity on the other. Test data is given in terms of match and free space patterns using spin linear sources to obtain antenna axial ratios. The low-end gain was improved from -17 dBi to -5 dBi. Two Vivaldi slot antennas (star junction fed and an antipodal construction) are discussed as alternative antennas offering broadband high gain and economical construction. Both designs produced good patterns with a +5 dBi average gain over the band. Patterns for the log spiral and Archimedean spiral, together with recommendations for future improvements are provided.
机译:螺旋天线是探地雷达(GPR)中常用的辐射器之一。地雷检测通常在500 MHz至4 GHz之间的目标频段中进行。本文讨论了由美国加利福尼亚州中国湖海军空战中心(NAWC)进行的技术建议和研发工作,从而得出了我们尽力而为的螺旋设计,强调了最高的低频段增益,同时又保持了总体轴比纯度。这种设计包括在高介电质基板上印刷的螺旋状结构,该螺旋状结构允许天线以比传统塑料基板基于两个直径相同的臂状螺旋状结构更低的频率使用。采用分级介电覆盖方案以促进与一侧的自由空间和另一侧的衬有吸收腔的腔室的匹配。使用自旋线性源根据匹配和自由空间模式给出测试数据,以获得天线轴向比。低端增益从-17 dBi提高到了-5 dBi。讨论了两种Vivaldi缝隙天线(星形结馈电和对偶结构),它们是提供宽带高增益和经济结构的替代天线。两种设计均产生了良好的模式,在整个频段上的平均增益为+5 dBi。提供了对数螺旋和阿基米德螺旋的模式,以及对未来改进的建议。

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