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Size reduction of a microstrip antenna with dielectric superstrate using meta-materials: artificial magnetic conductors versus magneto-dielectrics

机译:使用超材料的具有电介质上覆层的微带天线的尺寸减小:人造磁导体与磁电介质

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Planar antenna gain can be enhanced using a high-permittivity cover as the superstrate (D.R. Jackson and N.G. Alexopolous, 1985). As well, partially reflecting sheets (PRSs) have been used as the superstrate layer for gain enhancement (T. Zhao et al., 2005). In addition, artificial magnetic conductors (AMCs) as the ground plane have been able to reduce the microstrip antenna size with a PRS cover (A. Fresidis et al., 2005). On the other hand, a class of novel materials called magneto-dielectrics has recently been introduced which can simulate both high permittivity and permeability, while being low-loss (H. Mosallaei and K. Sarabandi, 2004) (A. Buerkle and K. Sarabandi, 2005). Thus, these novel materials hold promise in antenna miniaturization (H. Mosallaei and K. Sarabandi, 2004) (A. Buerkle and K. Sarabandi, 2005). In this paper, initially a conventional microstrip antenna with the high-permittivity dielectric superstrate is designed. Then, using a periodic structure of metallic patches, acting as an AMC, the antenna size is reduced. Furthermore, another size reduction method for this class of high-gain antennas is proposed using magneto-dielectrics. The results are presented and discussed.
机译:使用高介电常数的覆盖层作为覆盖层可以提高平面天线的增益(D.R. Jackson和N.G. Alexopolous,1985)。同样,部分反射片(PRS)也被用作增益增强的上覆层(T. Zhao等,2005)。此外,作为接地平面的人造磁导体(AMC)能够通过PRS覆盖物减小微带天线的尺寸(A. Fresidis等,2005)。另一方面,最近引入了一类称为磁电介质的新型材料,该材料可以模拟高介电常数和磁导率,同时损耗低(H.Mosallaei和K.Sarabandi,2004)(A.Buerkle和K. Sarabandi,2005年)。因此,这些新颖的材料有望在天线小型化中发挥作用(H. Mosallaei和K. Sarabandi,2004)(A。Buerkle和K. Sarabandi,2005)。在本文中,最初设计了具有高介电常数电介质基板的常规微带天线。然后,使用充当AMC的金属贴片的周期性结构,可以减小天线尺寸。此外,提出了使用磁电介质来降低此类高增益天线尺寸的另一种方法。结果进行了介绍和讨论。

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