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Structural-electromagnetic bidirectional coupling analysis of space large film reflector antennas

  • Xinghua Zhang*
  • , Shuxin Zhang
  • , Zheng Ai Cheng
  • , Baoyan Duan
  • , Chen Yang
  • , Meng Li
  • , Xinbin Hou
  • , Xun Li
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

As used for energy transmission, a space large film reflector antenna (SLFRA) is characterized by large size and enduring high power density. The structural flexibility and the microwave radiation pressure (MRP) will lead to the phenomenon of structural-electromagnetic bidirectional coupling (SEBC). In this paper, the SEBC model of SLFRA is presented, then the deformation induced by the MRP and the corresponding far field pattern deterioration are simulated. Results show that, the direction of the MRP is identical to the normal of the reflector surface, and the magnitude is proportional to the power density and the square of cosine incident angle. For a typical cosine function distributed electric field, the MRP is a square of cosine distributed across the diameter. The maximum deflections of SLFRA linearly increase with the increasing microwave power densities and the square of the reflector diameters, and vary inversely with the film thicknesses. When the reflector diameter becomes 100 m large and the microwave power density exceeds 102 W/cm2, the gain loss of the 6.3 μm-thick reflector goes beyond 0.75 dB. When the MRP-induced deflection degrades the reflector performance, the SEBC should be taken into account.

Original languageEnglish
Pages (from-to)502-511
Number of pages10
JournalActa Astronautica
Volume139
DOIs
StatePublished - Oct 2017
Externally publishedYes

Keywords

  • Microwave radiation pressure
  • Radiation pattern
  • Space large film reflector antenna
  • Structural-electromagnetic coupling

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