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Arbitrary length zero-phase substrate integrated coaxial lines using NRI-TL metamaterials

机译:使用NRI-TL超材料的任意长度零相基板集成同轴线

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Arbitrary-length zero-degree phase-shifting lines are presented at X-band that are based on negative-refractive-index transmission-line (NRI-TL) metamaterials implemented in substrate integrated coaxial line (SICL) technology. Initially, a host substrate integrated coaxial line was loaded with a series interdigital capacitor and shunt printed inductors to form a single NRI-TL metamaterial unit cell. Subsequently, multi-stage NRI-TL metamaterial lines were realized by cascading multiple NRI-TL metamaterial unit cells. The performance of the metamaterial lines is analyzed based on their reflection loss, insertion loss, radiation loss and insertion phase for different lengths of line ranging from λ/5 to λ at 10 GHz. It is shown that the radiation loss remains below 0.003% of the total losses for all presented lengths of metamaterial lines, while exhibiting good reflection and transmission characteristics. These results indicate that the proposed zero-phase NRI-TL metamaterial lines in SICL technology are well suited for very low-loss guided-wave applications.
机译:在X波段上展示了任意长度的零度相移线,该线基于在衬底集成同轴线(SICL)技术中实现的负折射率传输线(NRI-TL)超材料。最初,主机基板集成同轴线装有一个串联叉指电容器和并联印刷电感器,以形成单个NRI-TL超材料单元。随后,通过级联多个NRI-TL超材料单元单元来实现多级NRI-TL超材料线。基于超材料线的反射损耗,插入损耗,辐射损耗和在10 GHz范围从λ/ 5到λ的不同长度的插入相位,可以分析其性能。结果表明,对于所有呈现的超材料线长度,辐射损耗保持在总损耗的0.003%以下,同时表现出良好的反射和透射特性。这些结果表明,在SICL技术中提出的零相NRI-TL超材料线非常适合于非常低损耗的导波应用。

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