• DocumentCode
    81594
  • Title

    Wideband Radar Cross-Section Reduction of a Stacked Patch Array Antenna Using Metasurface

  • Author

    Cheng Huang ; Wenbo Pan ; Xiaoliang Ma ; Xiangang Luo

  • Author_Institution
    State Key Lab. of Opt. Technol. on Nano-Fabrication & Micro-Eng., Inst. of Opt. & Electron., Chengdu, China
  • Volume
    14
  • fYear
    2015
  • fDate
    2015
  • Firstpage
    1369
  • Lastpage
    1372
  • Abstract
    In this letter, a two-layer metasurface is proposed to achieve radar cross-section (RCS) reduction of a stacked patch antenna at a broadband. The lower layer metasurface is composed of four square patches loaded with four resistors, which is utilized to reduce RCS in the operation band (2.75-3.4 GHz) of the patch antenna. The periodic square loops with four resistors mounted on each side are adopted to construct the upper layer metasurface for absorbing the incoming wave out of band. We first investigate the effectiveness of the proposed metasurface on the RCS reduction of the single stacked patch and then apply this strategy to the 1 ×4 stacked patch array. The proposed low RCS stacked patch array antenna is fabricated and measured. The experimental results show that the designed metasurface makes the antenna RCS dramatically reduced in a broadband covering the operation band and out-of-band from 5.5-16 GHz. Moreover, the introduction of metasurface is demonstrated to have little influence on the antenna performance.
  • Keywords
    UHF antennas; broadband antennas; microstrip antenna arrays; radar antennas; radar cross-sections; RCS reduction; frequency 2.75 GHz to 16 GHz; low RCS stacked patch array antenna; lower layer metasurface; periodic square loops; resistors; square patches; two-layer metasurface; wideband radar cross-section reduction; Antenna arrays; Antenna measurements; Arrays; Metamaterials; Patch antennas; Radar cross-sections; Broadband; metasurface; patch array antenna; radar cross section (RCS);
  • fLanguage
    English
  • Journal_Title
    Antennas and Wireless Propagation Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1536-1225
  • Type

    jour

  • DOI
    10.1109/LAWP.2015.2407375
  • Filename
    7050335