首页> 外文期刊>Aerospace >Axial Ratio and Gain Enhancement of a Circular-Ring Slot Antenna Using a Pair of Asymmetrical Rectangular Slots and a Parasitic Patch for a Radio Beacon on a Nanosatellite
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Axial Ratio and Gain Enhancement of a Circular-Ring Slot Antenna Using a Pair of Asymmetrical Rectangular Slots and a Parasitic Patch for a Radio Beacon on a Nanosatellite

机译:使用一对非对称矩形缝隙和寄生天线的纳米卫星上无线电信标的圆环缝隙天线的轴向比率和增益增强

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Radio beacons enable measurements of ionospheric radio scintillations and total electron content (TEC). These beacons transmit unmodulated, phase-coherent waves in S-band frequencies. Many satellite applications require circularly polarized (CP) wideband antennas. Their compact size, lightweight, and simple fabrication method make CP antennas suitable for small satellite systems. The slot antenna has wideband impedance, but the 3 dB axial ratio bandwidth (ARBW) is narrower compared to the impedance bandwidth (IBW). In this paper, a circularly polarized circular-slotted antenna (CSA) is proposed to enhance the ARBW and the antenna gain. A pair of asymmetrical rectangular slots, a simple 50 ? feedline and a parasitic patch were introduced to a CSA to enhance the 3 dB ARBW and the antenna gain. Rectangular slots were inserted on the diagonal axis of the CSA, the feedline was shifted to the left side of the x -axis, and a parasitic patch was attached to the circular slot. The lengths of the rectangular slots correspond to the resonant frequency, and the parasitic patch width corresponds to the higher frequency of the 3 dB ARBW. The asymmetrical rectangular slots, the shifted feedline, and the parasitic patch successfully improved the measured 3 dB ARBW of the antenna by 787.5 MHz or 35.79%. The measured gain of a CSA with left-hand circular polarization (LHCP) was also improved by shifting the feedline and the rectangular slot, achieving a peak gain of 5 dBic.
机译:无线电信标可以测量电离层的无线电闪烁和总电子含量(TEC)。这些信标以S波段频率传输未经调制的相位相干波。许多卫星应用需要圆极化(CP)宽带天线。 CP天线的紧凑尺寸,轻巧和简单的制造方法使其适用于小型卫星系统。缝隙天线具有宽带阻抗,但3 dB的轴向比率带宽(ARBW)与阻抗带宽(IBW)相比较窄。本文提出了一种圆极化圆缝天线(CSA),以提高ARBW和天线增益。一对不对称的矩形槽,简单的50?馈线和寄生贴片被引入CSA,以增强3 dB ARBW和天线增益。在CSA的对角轴上插入矩形槽,将馈线移至x轴的左侧,并将寄生贴片连接到圆形槽。矩形缝隙的长度对应于谐振频率,寄生贴片宽度对应于3 dB ARBW的较高频率。非对称矩形缝隙,偏移的馈线和寄生贴片成功地将天线的3 dB ARBW测量值提高了787.5 MHz或35.79%。通过移动馈线和矩形缝隙,还可以提高带有左旋圆极化(LHCP)的CSA的测量增益,从而获得5 dBic的峰值增益。

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