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May 20, 2026IET Microwaves Antennas & Propagation0 citationsOpen Access

A Cylindrical Conformal Miniaturised Element Frequency Selective Surface With Unusual Resonance for Electromagnetic Shielding

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ZCZhaoran ChenLXLi XJHJunjie Hu

Key Points

  • The objective is to introduce a novel Miniaturised Element Frequency Selective Surface that effectively provides electromagnetic shielding for sensitive receivers while maintaining transparency at certain frequencies.
  • Fabrication and testing of planar and curved prototypes of the MEFSS.
  • Simulation comparison with measured transmission coefficients at various incident angles.
  • Testing of insertion losses under TE and TM polarizations in a Compact Antenna Test Range.
  • Average shielding performance exceeds 17.3 dB under normal incidence in two stopbands for both polarizations.
  • Measured insertion losses in the passband are 0.60 dB for TE and 0.47 dB for TM polarizations.
  • Far-field pattern measurements are consistent with simulation results.

Abstract

ABSTRACT This paper introduces a Miniaturised Element Frequency Selective Surface (MEFSS) with unusual resonance characteristics that the longer loop determines the higher‐frequency resonance, whereas the short loop supports the lower‐frequency resonance, which provides electromagnetic shielding for the high‐sensitivity Intermediate‐Frequency (IF) receiver on the remote‐sensing module of a radiometer and is transparent at the data‐link frequency of 5.8 GHz. The MEFSS isolates the signals at 2.4 and 3.5 GHz, avoiding the crosstalk with IF signal. The longer metallic strip increases the equivalent inductance and improves resonance stability, as illustrated by an equivalent circuit model based on the field distribution. The planar and curved prototypes are fabricated and tested. The transmission coefficients of the planar Frequency Selective Surface (FSS) at different incident angles agree well with the simulation. In the test, MEFSS exceeds 17.3 dB in average shielding performance under normal incidence in two stopbands for both polarisations, with a maximum insertion loss of less than 1 dB over an incident angle range of 0°–70° in passband. The far‐field patterns, gains, and insertion losses of conformal MEFSS are measured in Compact Antenna Test Range (CATR). The far‐field patterns are consistent with the simulations. The measured insertion losses of conformal MEFSS in the passband are 0.60 and 0.47 dB under TE and TM polarisations.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/6a0d4f34f03e14405aa9a797https://doi.org/10.1049/mia2.70106
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