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Millimeter-Wave Substrate Integrated Waveguide Passive Van Atta Reflector Array

机译:毫米波基片集成波导无源Van Atta反射器阵列

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摘要

A millimeter-wave passive Van Atta retrodirective antenna (RDA) array is presented in substrate integrated waveguide technology. The proposed RDA design is based on alternating SIW slot antenna arrays whose longitudinal slots are etched in a continuous ground plane covering the entire circuit thus minimizing the diffraction at the edges of the feeding network. Owing to its closed guiding medium and high Q factor, the SIW feed topology provides an optimum coupling to the radiating elements with minimum losses and spurious feed radiation allowing a simple passive design with enhanced radar cross section (RCS). Two SIW-based prototypes are presented in both single- and double-layer configurations at 30 GHz. While the single layer design can be extended to larger RDAs with minimum losses, the double-layer configuration is exploited to provide a more compact design that reduces the scattering of the structure while providing the same re-radiated pattern of the corresponding single layer configuration. Simulated and measured results are in good agreement showing more than 10 dB enhancement in the monostatic RCS of the passive RDA over an angle of ${pm}60^{circ}$ from boresight, compared to the equal-size reference rectangular metallic sheet.
机译:在基板集成波导技术中提出了毫米波无源Van Atta定向天线(RDA)阵列。所提出的RDA设计基于交替的SIW缝隙天线阵列,其纵向缝隙在覆盖整个电路的连续接地平面中被蚀刻,从而最大程度地减少了馈电网络边缘的衍射。由于其封闭的引导介质和高Q系数,SIW馈电拓扑结构以最小的损耗和杂散的馈电辐射提供了与辐射元件的最佳耦合,从而实现了具有增强的雷达横截面(RCS)的简单无源设计。以30 GHz的单层和双层配置展示了两个基于SIW的原型。虽然单层设计可以以最小的损耗扩展到更大的RDA,但是利用双层配置可以提供更紧凑的设计,从而减少结构的散射,同时提供与相应单层配置相同的重新辐射图案。仿真结果与测量结果吻合良好,表明无源RDA的单静态RCS在 $ {pm} 60 ^ {circ与等尺寸的参考矩形金属薄板相比,来自视线的} $

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