Analysis and Design of Millimeter Wave Series-Fed Microstrip Array Antenna

Heng Zhang, Shangrong Ouyang, Lina Zhang, Yuhuan Zhang, Yi Huang
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Abstract

To meet the growing demand for Millimeter Wave antenna performance, we investigated the series-fed microstrip array antenna operating at 77 GHz and analyzed its admittance characteristics using the microstrip transmission line model. A two-dimensional low-sidelobe microstrip array antenna has been designed, which composed of $8 \times 8$-element rectangular patches by combining the form of serial feeding and the microstrip power divider. The simulation results show that the optimized serial feed antenna array can achieve a gain of more than 22.6dB at the center frequency of 77.5GHz. The half-power lobe widths of the E-plane and H-plane are about 14.7° and 11.7°, respectively. By using quarter-wavelength transformer and amplitude weighting, the side lobe level (SLL) of the series-fed array antenna is lower than −17dB. The bandwidth is about 810MHz (VSWR<1.5). This antenna is easy to manufacture, and has the characteristics of low sidelobe, high gain and narrow beam, which meets the design requirements.
毫米波串联馈电微带阵列天线的分析与设计
为了满足日益增长的毫米波天线性能需求,研究了工作在77 GHz的串联馈电微带阵列天线,并利用微带传输线模型分析了其导纳特性。采用串联馈电和微带功率分配器相结合的方式,设计了由8 × 8元矩形贴片组成的二维低旁瓣微带阵列天线。仿真结果表明,优化后的串行馈电天线阵列在中心频率为77.5GHz时可获得22.6dB以上的增益。e平面和h平面的半功率瓣宽分别约为14.7°和11.7°。通过采用四分之一波长变压器和幅度加权,串联馈电阵列天线的旁瓣电平(SLL)低于- 17dB。带宽约为810MHz (VSWR<1.5)。该天线制作简单,具有低旁瓣、高增益、窄波束等特点,满足设计要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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