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Novel Flexible Dual-Frequency Broadside Radiating Rectangular Patch Antennas Based on Complementary Planar ENZ or MNZ Metamaterials

机译:基于互补平面ENZ或MNZ超材料的新型柔性双频宽边辐射矩形贴片天线

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摘要

A novel scheme of designing dual-frequency broadside radiating rectangular patch antennas is proposed. Cavity model analysis shows that, by partially loading Lorentzian dispersive epsilon-near-zero (ENZ) or mu-near-zero (MNZ) metamaterials (MTM), the electric fields at two radiating edges of the patch antennas can be out of phase and a broadside radiation pattern can be achieved at both operating frequencies. With proper constitutive parameters and filling ratio, the frequency ratio (FR) of the dual-frequency antenna can be flexibly chosen in a very wide range. Experimental results of a double positive (DPS)-MNZ based dual-frequency patch antenna, with its MNZ practically implemented by a complementary electric-LC (CELC) array etched on the patch surface, demonstrates the validity of such scheme. A detailed design procedure is also described. Compared to some conventional and other MTM based techniques, the proposed dual-frequency solution shows its advantages on excellent broadside radiating pattern with low cross-polarization and reduced back lobe, FR flexibility, and ease of fabrication.
机译:提出了一种设计双频宽边辐射矩形贴片天线的新方案。腔模型分析表明,通过部分加载洛伦兹分散的零ε(ENZ)或μ零(MNZ)的超材料(MTM),贴片天线的两个辐射边缘处的电场可以异相,并且可以在两个工作频率上获得宽边辐射图。借助适当的本构参数和填充率,可以在很宽的范围内灵活选择双频天线的频率比(FR)。基于双正(DPS)-MNZ的双频贴片天线的实验结果,其MNZ实际上是通过在贴片表面蚀刻的互补电LC(CELC)阵列实现的,证明了该方案的有效性。还描述了详细的设计过程。与某些传统技术和其他基于MTM的技术相比,所提出的双频解决方案具有出色的宽边辐射方向图,具有低交叉极化和减少的后瓣,FR柔韧性以及易于制造的优点。

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