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May 6, 2026Microwave and Optical Technology Letters0 citations

Study of Unidirectional/Bidirectional Pattern—Reconfigurable Antenna With Impedance Match of Two Modes

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PYPengyue YangCYChao YiZXZijian Xing

Key Points

  • To present a reconfigurable antenna that can achieve unidirectional and bidirectional radiation patterns with effective impedance matching.
  • Developed a butterfly-shaped pattern-reconfigurable antenna using two reflective elements and integrated PIN diodes.
  • Controlled reconfiguration of radiation patterns via DC control circuits to manage anti-phase currents.
  • Fabricated a prototype for measuring performance across specified frequency bands.
  • Achieved stable gain with an overall antenna size of 0.87λ0 x 0.87λ0 x 0.015λ0 at 4.5 GHz.
  • Measured overlapping impedance bandwidth of 16.5% ranging from 4.34 to 5.12 GHz.
  • Demonstrated gain bandwidth of 14.9% covering the 4.34 to 5.04 GHz range, suitable for 5G applications.

Abstract

ABSTRACT This letter presents a butterfly‐shaped pattern‐reconfigurable antenna featuring unidirectional/bidirectional (U/B) radiation patterns and broadband stable gain. This paper innovatively utilizes the coupling effect between two reflective elements to achieve impedance matching for the antenna's bidirectional radiation pattern. Pattern reconfiguration is realized by controlling two pairs of PIN diodes integrated onto parallel twin lines via dedicated DC control circuits. The bidirectional pattern occurs when two driving units are fed with equal‐amplitude and anti‐phase currents, which are spaced at 0.5λ 0 apart (at 4.5 GHz). This feeding configuration, combined with coupling effects between reflective elements, enables the bidirectional pattern. The stable gain stems primarily from the director and reflector units. A prototype was fabricated and measured, yielding an overall antenna size of 0.87λ 0 ×0.87λ 0 ×0.015λ 0 at 4.5 GHz. The measured overlapping impedance bandwidths for the three patterns are 16.5% (4.34–5.12 GHz). The measured overlapping 0.5‐dB stable gain bandwidths for the three patterns are 14.9% (4.34–5.04 GHz). This coverage encompasses the 5 G n86 (4.4–4.9 GHz) and n90 (4.9–5.0 GHz) bands, enabling flexible deployment in high‐density scenarios like urban areas and stadiums.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69fa986a04f884e66b53224ehttps://doi.org/10.1002/mop.70599
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