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首页> 外文期刊>IEICE Transactions on Communications >Transition from Waveguide to Two Microstrip Lines with Slot Radiators in the Millimeter-Wave Band
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Transition from Waveguide to Two Microstrip Lines with Slot Radiators in the Millimeter-Wave Band

机译:在毫米波频段中从具有槽型辐射器的波导过渡到两条微带线

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摘要

Many kinds of microstrip array antennas have been developed in the millimeter-wave band. In order to avoid feeding loss and the decrease of antenna gain by beam shift due to frequency changes, center-fed array antennas are advantageous. In this case, the element spacing around the feeding circuit of the transition from the waveguide to two microstrip lines is larger than one wavelength. Therefore, the sidelobe level grows significantly. In order to suppress the sidelobe level, we propose transitions with slot radiators. Moreover, any polarization angles can be achieved by changing the slot angle. A wide variety from 1.5% to 70% of slot radiator coupling powers can be achieved. To investigate the performance of the proposed transition, 10, 22 and 30-element center-fed microstrip comb-line antennas with the proposed transition were developed at 76.5 GHz, and measured performance was evaluated in the millimeter-wave band.
机译:在毫米波波段中已经开发了多种微带阵列天线。为了避免馈电损耗和由于频率变化引起的波束移动引起的天线增益的降低,中心馈电阵列天线是有利的。在这种情况下,从波导到两条微带线的过渡的馈电电路周围的元件间距大于一个波长。因此,旁瓣水平显着增长。为了抑制旁瓣电平,我们建议使用槽式辐射器过渡。而且,通过改变缝隙角可以实现任何偏振角。可以实现1.5%至70%的缝隙散热器耦合功率。为了研究拟议过渡的性能,开发了具有拟议过渡的10、22和30元素中心馈送微带梳状线天线,并在76.5 GHz频率下对测量的性能进行了评估。

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