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April 3, 2026Scientific Reports1 citationsOpen Access

Compact 2-port linearly and circularly polarized antennas using low cross-polarization miniaturized patch

ATAnh Tran-TuanPhenikaa UniversityTHTrang Hoang-ThuPhenikaa UniversityTLTu Le-TuanPhenikaa University

Key Points

  • The aim is to develop compact antenna arrays that provide both linear and circular polarization with minimized cross-polarization effects.
  • Designed a miniaturized patch radiator with slots and meander-line structures.
  • Implemented two 2-port array configurations: one for linear polarization and one for dual circular polarization.
  • Operated at a frequency of 4.3 GHz with compact physical dimensions.
  • Demonstrated low cross-polarization radiation characteristics.
  • Showed compact size advantages over existing antennas.
  • Maintained stable radiation performance suitable for wireless applications.

Abstract

Abstract This paper presents compact two-port antenna arrays with linear and circular polarization based on a miniaturized patch radiator with extremely low cross-polarization radiation. The primary radiator employs a conventional rectangular patch loaded with multiple slots and meander-line structures to increase the equivalent capacitance, thereby lowering the resonant frequency without enlarging the antenna footprint. Owing to the inherently low cross-polarization radiation of the miniaturized radiator, two compact 2-port array configurations are implemented: the first provides polarization diversity under linear polarization, while the second employs a hybrid coupler to achieve dual circular polarization. Both arrays operate at 4.3 GHz and possess compact physical dimensions with stable radiation performance. Compared with state-of-the-art works, the proposed designs exhibit a significantly reduced size while maintaining competitive radiation characteristics, making them suitable for space-constrained wireless systems.

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Cite This Study

Tran-Tuan et al. (2026) studied this question.

synapsesocial.com/papers/69cf5ebc5a333a821460d3edhttps://doi.org/10.1038/s41598-026-46704-6
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