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Design of an X-band stripline-fed co-aperture microstrip multilayer transceiver array antenna

机译:X波段带状线馈电共孔径微带多层收发器阵列天线的设计

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An X-band co-aperture microstrip transceiver array antenna with the same frequency is designed in this paper. The content is as follows. With the purpose to reduce the effect of radiation created by feed network to radiation pattern, the multilayer structure is adopted and the feed network is placed in the lower layer of the antenna. This method can also expand the working bandwidth to some extent. This paper needs a twenty-eight-way power divider. In accordance with the need, a four-way and a seven-way divider are designed and that the prototype is T-type divider. Using metal via feed the patch element is the most straightforward solution and it is available. However, determining the radius and location is a tough progress during the design. Antenna is installed above the cavity components and surrounding environment is metal. Consequently, it is indispensable for power divider to be designed by stripline to adapt the environment. This comprehensively evaluates the effects of metal which is prescient. On the other hand, it is crucial to improve the transceiver isolation. Thus a rectangle slot has been effectively designed in top ground plane and this method do helpful than non-slot structure. At last, an antenna is fabricated and it has been tested and analyzed. The test results are: Antenna working bandwidth is 9.35 GHz!!9.85 GHz, E plane beam width is 48°±3°, H plane beam width is 9°±1°, E plane side lobe level is greater than or equal to 15 dB and H plane side lobe level is greater than or equal to 20 dB. The gain within bandwidth is greater than or equal to 13.65 dB. Transceiver isolation is greater than or equal to 40 dB.
机译:本文设计了一种具有相同频率的X波段共孔径微带收发器阵列天线。内容如下。为了减少馈电网络产生的辐射对辐射方向图的影响,采用了多层结构并将馈电网络放置在天线的下层。这种方法也可以在一定程度上扩展工作带宽。本文需要一个二十八路功率分配器。根据需要设计了四路和七路分频器,原型为T型分频器。使用金属通孔补片元件是最简单的解决方案,并且可以使用。但是,在设计过程中确定半径和位置是一项艰巨的任务。天线安装在空腔组件上方,周围环境是金属。因此,由带状线设计功率分配器以适应环境是必不可少的。这全面评估了有先见之明的金属的影响。另一方面,改善收发器隔离至关重要。因此,已经在顶部接地平面中有效地设计了矩形槽,并且该方法比非槽结构有用。最后,制作了天线并进行了测试和分析。测试结果为:天线工作带宽为9.35 GHz !! 9.85 GHz,E平面波束宽度为48°±3°,H平面波束宽度为9°±1°,E平面旁瓣电平大于或等于15 dB和H平面旁瓣电平大于或等于20 dB。带宽内的增益大于或等于13.65 dB。收发器隔离度大于或等于40 dB。

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