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A research for millimeter wave patch antenna and array synthesis

机译:毫米波贴片天线与阵列合成研究

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Millimeter-wave antennas are one of the key parts in 5G systems due to its useful properties such as ultra wideband and high transmission rate. In this paper, the research of microstrip millimeter wave patch antenna at 28 GHz is proposed. The resonant frequency of microstrip antenna is shifted to the expanding bandwidth through slotting the patch. Meanwhile, adding punish function to fitness function is proposed to develop the bandwidth and improve the resonant frequency to desired frequency. The slot position is obtained by the genetic algorithm (GA). Furthermore, by using the numerical array synthesis, a linear uniformly spaced array model with feed network is obtained. The array with better radiation pattern is obtained through GA. The simulation results show that the bandwidth is improved from 0.9 to 1.25 GHz while the resonant frequency is remained at 28 GHz with the help of the proposed punish function. The side-lobe level is lowered by 4 dB and the maximum antenna gain is improved to 0.4 dB at the cost of 1° wider of half-power (HP) beamwidth.
机译:毫米波天线由于其有用的特性(例如超宽带和高传输速率)而成为5G系统中的关键部件之一。本文提出了28 GHz微带毫米波贴片天线的研究。微带天线的谐振频率通过将贴片缝隙转移到扩展的带宽上。同时,提出了在适应度函数中增加惩罚函数的方法,以发展带宽并将谐振频率提高到期望的频率。插槽位置是通过遗传算法(GA)获得的。此外,通过使用数值阵列综合,获得了具有馈电网络的线性均匀间隔阵列模型。通过遗传算法得到辐射图更好的阵列。仿真结果表明,借助于所提出的惩罚函数,带宽从0.9 GHz提高到1.25 GHz,而谐振频率保持在28 GHz。旁瓣电平降低了4 dB,最大天线增益提高到0.4 dB,代价是半功率(HP)波束宽度增加了1°。

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