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A miniaturized artificial magneto-dielectric resonator antenna with split ring resonators

机译:具有裂环谐振器的小型人造磁电介质谐振器天线

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Naturally occurring high permeability materials are widely used in antenna miniaturization at VHF-UHF frequency range. However, they are unable to be used at frequencies beyond 500 MHz due to their high loss. The main idea of this paper is to reproduce the magnetic behavior using metallic inclusions for low-loss microwave applications. In this paper, an artificial magneto-dielectric resonator antenna (AMDRA), operating at 3.857 GHz, based on split ring resonator (SRR) is presented. The simulation results are compared to those of the conventional dielectric resonator antenna (DRA) with high permittivity. It is shown that the size of the proposed antenna is 1.8 times smaller than that of the conventional DRA, with an efficiency of 88% and a gain of 5.8 dBi. This demonstrates that the artificially induced permeability can be effectively used in dielectric antenna miniaturization.
机译:天然存在的高磁导率材料被广泛用于VHF-UHF频率范围的天线小型化。但是,由于它们的高损耗,它们无法在500 MHz以上的频率下使用。本文的主要思想是在低损耗微波应用中使用金属夹杂物重现磁性能。本文提出了一种基于裂环谐振器(SRR)的3.857 GHz频率的人造磁电介质谐振器天线(AMDRA)。将模拟结果与具有高介电常数的常规介电共振器天线(DRA)进行了比较。结果表明,所提出的天线尺寸是传统DRA天线的1.8倍,效率为88%,增益为5.8 dBi。这证明了人工感应的磁导率可以有效地用于介电天线的小型化。

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