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首页> 外文期刊>International journal of antennas and propagation >Design and Analysis of Wideband Nonuniform Branch Line Coupler and Its Application in a Wideband Butler Matrix
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Design and Analysis of Wideband Nonuniform Branch Line Coupler and Its Application in a Wideband Butler Matrix

机译:宽带非均匀支线耦合器的设计与分析及其在宽带巴特勒矩阵中的应用

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This paper presents a novel wideband nonuniform branch line coupler. An exponential impedance taper is inserted, at the series arms of the branch line coupler, to enhance the bandwidth. The behavior of the nonuniform coupler was mathematically analyzed, and its design of scattering matrix was derived. For a return loss better than 10 dB, it achieved 61.1% bandwidth centered at 9 GHz. Measured coupling magnitudes and phase exhibit good dispersive characteristic. For the 1 dB magnitude difference and phase error within 3°, it achieved 22.2% bandwidth centered at 9 GHz. Furthermore, the novel branch line coupler was implemented for a wideband crossover. Crossover was constructed by cascading two wideband nonuniform branch line couplers. These components were employed to design a wideband Butler Matrix working at 9.4 GHz. The measurement results show that the reflection coefficient between the output ports is better than 18 dB across 8.0 GHz-9.6 GHz, and the overall phase error is less than 7°.
机译:本文提出了一种新颖的宽带非均匀分支线耦合器。在分支线路耦合器的串联臂处插入一个指数阻抗锥度,以增加带宽。对非均匀耦合器的行为进行了数学分析,并推导了其散射矩阵的设计。对于高于10 dB的回波损耗,它实现了以9 GHz为中心的61.1%带宽。测得的耦合幅度和相位表现出良好的色散特性。对于1 dB的幅度差和3°以内的相位误差,它实现了以9 GHz为中心的22.2%带宽。此外,新颖的支线耦合器实现了宽带交叉。交叉是通过级联两个宽带非均匀分支线耦合器构建的。这些组件用于设计工作在9.4 GHz的宽带Butler矩阵。测量结果表明,在8.0 GHz-9.6 GHz范围内,输出端口之间的反射系数优于18 dB,总相位误差小于7°。

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  • 来源
    《International journal of antennas and propagation 》 |2012年第1期| p.853651.1-853651.7| 共7页
  • 作者单位

    Antenna Propagation and Microwave Research Group (AMRG), Department of Electrical Engineering,Universitas Indonesia, New Campus UI, West Java, Depok 16424, Indonesia,Department of Electrical Engineering, Trisakti University, Kyai Tapa, Grogol, West Jakarta 11440, Indonesia;

    Antenna Propagation and Microwave Research Group (AMRG), Department of Electrical Engineering,Universitas Indonesia, New Campus UI, West Java, Depok 16424, Indonesia;

    Antenna Propagation and Microwave Research Group (AMRG), Department of Electrical Engineering,Universitas Indonesia, New Campus UI, West Java, Depok 16424, Indonesia;

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