4.4 Article

Low-profile and wideband gain enhanced Fabry-Perot cavity antenna using gradient PRS and AMC

期刊

IET MICROWAVES ANTENNAS & PROPAGATION
卷 14, 期 15, 页码 1952-1959

出版社

INST ENGINEERING TECHNOLOGY-IET
DOI: 10.1049/iet-map.2019.1129

关键词

antenna radiation patterns; frequency selective surfaces; microstrip antennas; antenna feeds; broadband antennas; directive antennas; metamaterial antennas; parasitic patches; U-slot driven patch; wideband phase compensation; FPCA; gradient size AMC; impedance bandwidth; gradient PRS; wideband gain enhancement; gradient partially reflective surface; gradient artificial magnetic conductor; wideband source antenna; Fabry-Perot cavity antennas; complementary frequency-selective surface; low-profile antenna; square hole; reflection coefficients; radiation patterns; gain enhanced bandwidth; bandwidth 6; 0 GHz to 11; 1 GHz

资金

  1. National Natural Science Foundation of China [61661011, 61761012]
  2. China Postdoctoral Science Foundation [2019M653371]
  3. Key Laboratory of Cognitive Radio and Information Processing, Ministry of Education (Guilin University of Electronic Technology) [CRKL190101]

向作者/读者索取更多资源

Low-profile and wideband gain enhancement Fabry-Perot cavity antennas (FPCA) is proposed using gradient Partially Reflective Surface (PRS) and gradient Artificial Magnetic Conductor (AMC). A wideband source antenna is designed with a -10 dB impedance bandwidth of 58.1% (6.1-11.1 GHz). The PRS is constructed by a complementary frequency-Selective Surfaces (FSS) with a square hole and four small patches in a unit, which realizes phase increasing with frequency. The PRS and the AMC are gradient alone x-direction to achieve wideband phase compensation. While they are uniform in y-direction to realize better gain enhancement. Compared with the source antenna, the gain enhancement of the proposed FPCA is about 4-7 dBi. Moreover, the simulated and measured 3-dB gain bandwidths are 7.26-10.33 GHz (34.8%) and 6.8-10.8 GHz (46%), respectively. The gain enhanced bandwidth is about 52.3% (6.5-11.1 GHz). The impedance bandwidth is 6-11.1 GHz (59.65%). By using the gradient size AMC, the profile of the FPCA is reduced from 0.5 lambda(0) to 0.2 lambda(0), where lambda(0) is the wavelength of 8.5 GHz. The proposed FPCA has the characteristics of wide impedance bandwidth, wide 3-dB gain bandwidth, wide gain enhanced bandwidth and low-profile.

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