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Analysis of Modal Excitation in Wideband Slot-Loaded Microstrip Patch Antenna Using Theory of Characteristic Modes

机译:利用特性模式理论分析宽带槽加载微带贴片天线的模态激发

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In this communication, modal excitation of characteristic modes in the ultrawideband (UWB) slot-loaded microstrip patch has been investigated. A comprehensive analysis of modal excitation due to straight and L-probe feed reveals physical insight about antenna behavior due to feeding structure. This communication analyzes the modal effect of feed inclusion in two steps, i.e., before and after excitation. The application of characteristic modes to antenna bandwidth enhancement serves as a demonstration of the broad utility of the theory of characteristic modes (TCM), where multiple resonant modes participate simultaneously to broaden the bandwidth. This communication also examines the potential capability of natural resonant modes to contribute to the impedance bandwidth upon excitation. The slot-loaded antenna exhibits 35% impedance bandwidth with the straight probe feed, but bandwidth increased up to 81% by changing the feed to L-probe. Hence, impedance bandwidth has been enhanced up to 46% (approx) by exciting particular resonant modes via changing and optimizing a feed structure.
机译:在这种通信中,已经研究了超广域带(UWB)槽加载的微带贴片中的特征模式的模态激发。由于直线和L-探针饲料导致的模态励磁综合分析揭示了由于饲养结构导致天线行为的物理洞察力。该通信分析了饲料包裹物的模态效应,即激励前后。特性模式在天线带宽增强中的应用用作特征模式(TCM)理论的广泛效用的演示,其中多种谐振模式同时参与以宽带宽。该通信还研究了自然谐振模式的潜在能力,以在激发激发时贡献阻抗带宽。槽加载的天线具有直线探头进料的35%阻抗带宽,但通过将进料改变为L-探针,带宽增加了81%。因此,通过更换和优化馈电结构,通过激发特定的谐振模式,通过更换和优化进料结构,阻抗带宽已经高达46%(约)。

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