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April 5, 2026Journal of Electromagnetic Engineering and Science0 citationsOpen Access

An X-Band High-Isolation MIMO Antenna with a Resonant Ring Metamaterial Decoupling Structure

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XZXuemei ZhengShangrao Normal UniversityTZTongchao ZhangElectric Power University

Key Points

  • The aim is to develop a compact MIMO antenna with high isolation and wide bandwidth using a metamaterial structure.
  • Developed a novel single-layer metamaterial decoupling structure with split rings.
  • Conducted measurements to evaluate impedance bandwidth, interport isolation, and gain.
  • Assessed radiation patterns and envelope correlation coefficients to validate performance.
  • Achieved -10 dB impedance bandwidth of 8.1–12.4 GHz, covering the entire X-band.
  • Minimum interport isolation improved to -22.7 dB, a 10.2 dB enhancement.
  • Maintained peak gain of 7.2 dB and favorable radiation patterns with a front-to-back ratio >15 dB.

Abstract

This paper proposes a compact broadband multiple-input multiple-output antenna array with a novel single-layer metamaterial decoupling structure. The metamaterial unit, composed of two symmetrically arranged split rings with distinct resonance characteristics, is positioned above the antenna elements to suppress mutual coupling. Measurements indicate that a -10 dB impedance bandwidth of 8.1–12.4 GHz (42.2% fractional bandwidth) covers the entire X-band. By integrating the metamaterial layer, the design achieves a minimum interport isolation of -22.7 dB (a 10.2 dB improvement) while maintaining a peak gain of 7.2 dB. Comprehensive evaluations of radiation patterns (front-to-back ratio >15 dB), envelope correlation coefficients (9.99 dB) validate the proposed antenna’s suitability for X-band systems, particularly in phased array radars and satellite communications demanding high isolation and wideband operations.

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Cite This Study

Zheng et al. (2026) studied this question.

synapsesocial.com/papers/69d1fd9ca79560c99a0a3ba8https://doi.org/10.26866/jees.2026.2.r.355
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