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Novel Modal Properties and Relevant Scanning Behaviors of Phased Arrays of Microstrip Leaky-Wave Antennas

机译:微带漏波天线相控阵的新型模态特性及相关扫描特性

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In this work, different previously-unexplored features are investigated for the radiation performance of linear phased arrays based on printed-circuit leaky-wave antennas for microwave and millimeter-wave applications. By means of a rigorous modal analysis in the unit cell based on the spectral-domain approach, we have considered the beam-scanning properties of microstrip leaky-wave arrays in terms of spatial harmonics, as a function of both the phase shift and the spacing between the radiating microstrip lines. We have thus found and interpreted in a consistent way various original characteristics, such as transition regions between leaky-wave and surface-wave regimes, and the occurrence of spurious radiation (grating lobes) in largely-spaced arrays related to the presence of new, additional complex improper modes. Numerical full-wave simulations of the radiation patterns for realistic configurations of microstrip arrays confirm the theoretical predictions made on the basis of the modal properties of the involved leaky waves.
机译:在这项工作中,针对微波和毫米波应用中基于印刷电路泄漏波天线的线性相控阵的辐射性能,研究了不同的先前未开发的功能。通过基于光谱域方法在晶胞中进行严格的模态分析,我们已经考虑了微带漏波阵列在空间谐波方面的束扫描特性,这是相移和间隔的函数辐射微带线之间。因此,我们以一致的方式发现并解释了各种原始特征,例如泄漏波和表面波状态之间的过渡区域,以及与新的存在相关的大间隔阵列中的伪辐射(光栅波瓣)的出现。其他复杂的不当模式。对于微带阵列的实际配置,辐射模式的数值全波模拟证实了根据所涉及的泄漏波的模态特性所做的理论预测。

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