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Experimental study of dielectric loaded planar antenna fed by waveguide network

机译:波导网络馈电的介质加载平面天线的实验研究

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Gain enhancement of an antenna is achieved by loading of a rectangular parallelpiped or circular cylindrical dielectric in front of a source with the ground plane. The dielectric loaded antennas with a diameter d=(1/spl sim/3)/spl lambda//sub 0/ (/spl lambda//sub 0/: wavelength in free space) have the mixed properties of dielectric covered antennas, rod antennas and lens antennas. We reported a high gain planar array antenna for DBS, whose element antenna was a circularly polarized microstrip patch loaded by a dielectric, but the aperture efficiency of this antenna was limited in terms of the conductor and the radiation losses of the microstrip lines. The element antenna loaded by a dielectric has such a high gain that the grating lobe can be decreased sufficiently even if the element spacing in the array is wider than the wavelength in free space. Therefore it is expected that the parallel feeding by the waveguide network may be feasible and then we can develop a high efficient and broad frequency bandwidth array antenna. This paper reports experimental results of the dielectric loaded planar antenna fed by a waveguide network with 16 element radiators. This has a gain of 26.5 dBi at 12.7 GHz with an aperture efficiency of 96 %.
机译:天线的增益增强是通过将矩形平行六面体或圆柱状电介质装入源极与接地平面之间来实现的。直径为d =(1 / spl sim / 3)/ spl lambda // sub 0 /(/ spl lambda // sub 0 /:自由空间中的波长)的电介质加载天线具有电介质覆盖天线,杆的混合特性天线和透镜天线。我们报道了一种用于DBS的高增益平面阵列天线,其元件天线是由电介质加载的圆极化微带贴片,但是该天线的孔径效率受到导体和微带线辐射损耗的限制。由电介质加载的元件天线具有很高的增益,即使阵列中的元件间距比自由空间中的波长宽,也可以充分减小光栅波瓣。因此,期望通过波导网络的并行馈电可能是可行的,然后我们可以开发出一种高效,宽频带带宽的阵列天线。本文报告了由带有16个元件辐射器的波导网络馈电的装有介质的平面天线的实验结果。在12.7 GHz时增益为26.5 dBi,孔径效率为96%。

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