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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Transmitarray Design With Enhanced Aperture Efficiency Using Small Frequency Selective Surface Cells and Discrete Jones Matrix Analysis
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Transmitarray Design With Enhanced Aperture Efficiency Using Small Frequency Selective Surface Cells and Discrete Jones Matrix Analysis

机译:利用低频选择性表面单元和离散琼斯矩阵分析提高光圈效率的发射阵列设计

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We present a four-layer transmitarray antenna using small and dense frequency selective surface (FSS) cells and a horn antenna operated in a Ku band satellite downlink (10.7 to 12.75 GHz in Europe). The FSS offers a full transmission phase range of 360° and low loss between the incident and the transmitted waves: the magnitudes of the transmitted waves were equal to or better than -3.5 dB for incident transverse electric and transverse magnetic waves up to 30° in oblique angle. The transmitarray was fabricated using FR-4 boards with a loss tangent of about 0.02. FR-4 boards with lower loss tangents at the operating Ku band were not used because of the requirement for low cost. We also present the design of the horn antenna used to illuminate the transmitarray. The design applies discrete Jones matrix analysis; the final full transmitarray (333 unit cells) with the horn antenna were co-simulated using a full-wave simulation tool. The measured and simulation results are in excellent agreement. With a cell pitch of 0.39 λn0n, the transmitarray achieves a dynamic range of 20 dB. The measured gain of the transmitarray prototype is 26.2 dB at a center frequency of 11.7 GHz, resulting in an aperture efficiency of about 62%. The measured results were achieved with a very small transmitarray (backpack-fit versus truck-carried). The -1 dB gain bandwidth of the transmitarray antenna is 12.6% at the center frequency (11.7 GHz).
机译:我们提出了一种使用小型密集频率选择性表面(FSS)单元和在Ku波段卫星下行链路(欧洲为10.7至12.75 GHz)中运行的喇叭天线的四层发射阵列天线。 FSS提供360°的完整传输相位范围,并且入射波与发射波之间的损耗低:对于入射电磁波和横向电磁波,当入射波高达30°时,发射波的幅度等于或高于-3.5 dB斜角。使用具有约0.02损耗角正切的FR-4板制造发射阵列。由于对低成本的要求,未使用在工作Ku频段具有较低损耗角正切的FR-4板。我们还介绍了用于照亮发射阵列的号角天线的设计。该设计采用离散琼斯矩阵分析;最后,使用全波仿真工具对带有喇叭天线的最终完整发射阵列(333个单位单元)进行了共同仿真。测量结果和仿真结果非常吻合。像元间距为0.39λn 0 ,发射阵列的动态范围达到20 dB。在11.7 GHz的中心频率下,发射阵列原型的测量增益为26.2 dB,从而产生约62%的孔径效率。测量结果是通过非常小的发射阵列(背包装与卡车装)实现的。在中心频率(11.7 GHz)下,发射阵列天线的-1 dB增益带宽为12.6%。

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