AIP Advances (Dec 2015)

Broadbanding of circularly polarized patch antenna by waveguided magneto-dielectric metamaterial

  • Xin Mi Yang,
  • Juan Wen,
  • Chang Rong Liu,
  • Xue Guan Liu,
  • Tie Jun Cui

DOI
https://doi.org/10.1063/1.4939218
Journal volume & issue
Vol. 5, no. 12
pp. 127134 – 127134-11

Abstract

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Design of bandwidth-enhanced circularly polarized (CP) patch antenna using artificial magneto-dielectric substrate was investigated. The artificial magneto-dielectric material adopted here takes the form of waveguided metamaterial (WG-MTM). In particular, the embedded meander line (EML) structure was employed as the building element of the WG-MTM. As verified by the retrieved effective medium parameters, the EML-based waveguided magneto-dielectric metamaterial (WG-MDM) exhibits two-dimensionally isotropic magneto-dielectric property with respect to TEM wave excitations applied in two orthogonal directions. A CP patch antenna loaded with the EML-based WG-MDM (WG-MDM antenna) has been proposed and its design procedure is described in detail. Simulation results show that the impedance and axial ratio bandwidths of the WG-MDM antenna have increased by 125% and 133%, respectively, compared with those obtained with pure dielectric substrate offering the same patch size. The design of the novel WG-MDM antenna was also validated by measurement results, which show good agreement with their simulated counterparts.