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Miniaturisation of microstrip patch antenna using an artificial planar magneto-dielectric meta-substrate

机译:使用人造平面磁介电超基质使微带贴片天线小型化

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摘要

In this communication, a practically realisable artificial planar magneto-dielectric (MD) meta-substrate is proposed and investigated for microstrip patch antenna miniaturisation. The meta-substrate employs cross-coupled twisted metallic split-ring resonator ring pairs to achieve effective permeability (μeff) and permittivity (εeff) greater than that of the host dielectric which leads to antenna miniaturisation. Electromagnetic simulation and analysis of effective material parameters are performed to characterise it, which shows nearly equal enhanced effective permeability and permittivity (μeff ≃ εeff) at 2.35 GHz with low loss-factor level not achievable from natural materials. An inset fed microstrip patch antenna is designed on the proposed MD meta-substrate to test and validate its performance. The performances of the miniaturised patch antenna loaded with proposed dispersive MD meta-substrate, non-dispersive homogenous MD substrate, and high-permittivity substrates (lossy and loss-free) are compared with the conventional patch antenna on host dielectric. It is found that dispersive nature of the meta-substrate plays a critical role in the antenna performance. The antenna on proposed meta-substrate occupying an overall volume of 0.250λ0 × 0.344λ0 × 0.009λ0 at 2.35 GHz is 74.83% miniaturised as compared with the conventional antenna on host dielectric. To ensure the practicability, the designed antenna is fabricated and measured.
机译:在这种通信中,提出了一种可实际实现的人造平面磁电(MD)元衬底,并对其进行了研究,以实现微带贴片天线的小型化。超常基板采用交叉耦合的扭曲金属开环谐振器环对,以实现比主体电介质更大的有效磁导率(μeff)和介电常数(εeff),从而使天线小型化。对其进行了电磁仿真和有效材料参数的分析,以表征它的性能,结果表明,在2.35 GHz频率下,有效导磁率和介电常数(μeff≃εeff)几乎相等,而天然材料则无法实现低损耗因子水平。在拟议的MD元基板上设计了嵌入式馈电微带贴片天线,以测试和验证其性能。在主机电介质上,与常规贴片天线相比,装有拟议的分散MD元衬底,非分散均匀MD衬底和高介电常数衬底(有损耗和无损耗)的微型贴片天线的性能进行了比较。已经发现,超基质的分散特性在天线性能中起着关键作用。与主机电介质上的常规天线相比,拟议的元基板上的天线在2.35 GHz时的总体积为0.250λ0×0.344λ0×0.009λ0,小型化了74.83%。为了确保实用性,设计并测量了设计的天线。

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