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Design and Implementation of Two-Layer Compact Wideband Butler Matrices in SIW Technology for Ku-Band Applications

机译:SIW技术中用于Ku频段应用的两层紧凑宽带巴特勒矩阵的设计与实现

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摘要

The design and realization of a novel wideband two-layer 4 $times$ 4 Butler matrix in substrate integrated waveguide (SIW) technology are addressed. The two-layer SIW design is exploited through a two-fold enhancement approach. The two-layer topology is first explored in a simple matrix layout with minimum number of components. A space saving design is then proposed making optimum use of the two-layer topology and the SIW technology leading to a significant size reduction. A two-level, low-loss, wideband SIW transition is designed and optimized using its equivalent circuit model. The two corresponding Butler matrix prototypes are optimized, fabricated and measured. Measured and simulated results are in good agreement. Isolation characteristics better than $-$15 dB with input reflection levels lower than $-$ 12 dB are experimentally validated over 24% frequency bandwidth centered at 12.5 GHz. Measured transmission magnitudes and phases exhibit good dispersive characteristics of 1 dB, around an average value of $-$6.8 dB, and 10$^{circ}$ with respect to the theoretical phase values, respectively, over the entire frequency band. The impact of the measured transmission phases and magnitudes on the radiation pattern of a 4-element antenna array is also investigated.
机译:提出了一种新型的宽带二层4×4巴特勒矩阵在衬底集成波导(SIW)技术中的设计与实现。通过两层增强方法来利用两层SIW设计。首先在具有最少组件数量的简单矩阵布局中探索两层拓扑。然后提出了一种节省空间的设计,该设计可以最佳利用两层拓扑结构和SIW技术,从而显着减小尺寸。利用其等效电路模型设计和优化了两级,低损耗,宽带SIW转换。对两个相应的巴特勒矩阵原型进行了优化,制造和测量。测量和模拟结果吻合良好。在以12.5 GHz为中心的24%频率带宽上,通过实验验证了隔离特性优于$-$ 15 dB,输入反射电平低于$-$ 12 dB。测得的传输幅度和相位在整个频带上分别具有1 dB的良好色散特性,分别约为理论值的$-$ 6.8 dB和10 $ 10circ。还研究了测量的传输相位和幅度对4元素天线阵列辐射方向图的影响。

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