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Research on Factors Affecting Sidelobe Level of Millimeter Wave Microstrip Array Antenna

机译:影响毫米波微带阵列天线侧链水平的因素研究

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In this paper, 77GHz vehicle-borne anti-collision radar antenna is taken as an example to study and analyze the influence factors of millimeter-wave microstrip array antenna sidelobe level. The proposed antenna includes waveguide microstrip conversion, microstrip transmission line, and 10-element unequal amplitude microstrip array antenna. In order to reduce the sidelobe level (SLL), the surface current and the space electric field of the microstrip transmission line are analyzed. The SLL of the antenna is effectively reduced by changing the structure of the microstrip transmission line. When the conventional microstrip transmission line is used, the E-plane SLL of the antenna is -11.43dB. With the improved transmission line form, the SLL and gain are -19.41 dB and 14.43dB, with are increased by 8dB and 0.6dB, respectively.
机译:本文采用77GHz车辆传播的防碰撞雷达天线作为研究和分析毫米波微带阵列天线侧链水平的影响因素。所提出的天线包括波导微带转换,微带传输线和10元件不等幅度微带阵列天线。为了减少侧链电平(SLL),分析了微带传输线的表面电流和空间电场。通过改变微带传输线的结构,有效地减少了天线的SLL。当使用传统的微带传输线时,天线的E面SLL为-11.43dB。利用改进的传输线形式,SLL和增益为-19.41dB和14.43dB,分别增加8dB和0.6dB。

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