用于共形应用的球形嵌入式天线

A. Mueed, Jiadong Xu, Y. Shangbin
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引用次数: 5

摘要

在保形应用中使用平面天线具有很大的工程应用价值;然而,天线嵌入保形形状需要仔细分析。分析了用于球面保形应用的腔背接近耦合微带贴片天线。电介质和金属材料用于球体。同轴馈电天线用于共形应用的嵌入。在天线表面的顶部放置一个介电罩,以屏蔽贴片并使球面连续。使用两种类型的球面切割,半径为2λ和5λ,厚度为0.508 mm和7mm。仿真结果包括驻波比、辐射方向图和增益。对材料、厚度、半径、介质覆盖等参数的影响进行了研究。结果表明:同轴馈电天线在X波段的带宽超过30%,天线的阻抗对球面半径不敏感,但不同的球面厚度和切割程度会影响天线的辐射方向图。与厚度增加的金属球相比,厚度减小的电介质球的辐射图更稳定,而与球切割的程度无关。厚度增大的电介质球和厚度减小的金属球通过引入较高的后叶和侧叶而使辐射方向图恶化。介质覆盖的作用是使频带向低频偏移。金属球的增益较高。这种嵌入式天线有可能很容易用于平台安装的应用,如无人机、导弹或卫星。
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Spherical embedded antenna for conformal applications
Use of planar antenna for conformal applications is of great engineering utilization; however antenna embedding into conformal shapes needs careful analysis. The cavity-backed proximity coupled microstrip patch antenna for spherical conformal application is analyzed. Dielectric and metallic material is used for the sphere. Coax fed antenna is used for embedding for conformal application. A dielectric cover is placed on top of the surface of the antenna to shield the patch and make the spherical surface continuous. Two types of spherical cuts are used with radii of 2λ and 5λ and thickness of 0.508 mm and 7 mm. Simulation results including vswr, radiation pattern and gain are provided. The parametric study including the effect of material, thickness, radius and dielectric cover is also discussed for the design. The results indicate that the bandwidth of coax fed antenna exceeds 30% at X- band and the impedance of the antenna is not sensitive to the spherical radius, however the radiation pattern is affected for different thickness and extent of cut of sphere. The radiation pattern is more stable in case of dielectric sphere with reduced thickness as compared to the metallic sphere with increased thickness, irrespective of extent of sphere cut. The dielectric sphere with increased thickness and metallic sphere with reduced thickness deteriorate the radiation pattern by introducing higher back and side lobes. The effect of dielectric cover is to shift the frequency band towards lower frequencies. Higher gain is observed for metallic spheres. Such an embedded antenna has the potential to be easily used for platform mounted applications like UAV, Missile or satellites.
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