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A Low-Profile Wideband Filtering Transmitarray Antenna Using Multiresonance Patch Elements

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PRE
AI
Y
Yuanming Cai
K
Ke Li
L
Lehu Wen
S
Steven Gao
DOI:10.1109/LAWP.2025.3600885delete
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Abstract

Abstract

En 中文
This letter proposes a novel method of designing wideband low-profile filtering transmitarray (TA) antenna using multiresonance patch elements. The TA unit integrates two sets of shared-aperture interleaved rectangular patches operating at different resonant frequencies. By properly tuning the multiple resonant frequencies of the patches, the design achieves bandwidth enhancement and high-order frequency selectivity with superior out-of-band suppression characteristics. A 3-bit transmission phase control mechanism is realized through a hybrid approach combining patch orientation reversal with dimensional parameter adjustments. The proposed high-order filtering TA element has a compact three-metal-layer configuration on two stacked dielectric substrates, and the profile of the TA is as low as 0.1λ0, where λ0 is the free-space wavelength at the center of the operation frequency band. Based on the unit, a TA antenna is designed, fabricated, and measured. The measured peak gain and aperture efficiency are 26.5 dBi and 54.2%. The measured fractional 3 dB gain bandwidth is 24.2%. High suppressions of 33 dB and 31 dB are measured over the lower and upper out-of-bands. The advantages of the proposed TA include high-order bandpass filtering response, small thickness (0.1λ0), broad operational bandwidth, high aperture efficiency, and cost-effective fabrication.
Keywords:
Filtering antenna
low-profile
multiresonance
transmitarray (TA) antenna
wideband

Journal

IEEE Antennas and Wireless Propagation Letters cover
IEEE Antennas and Wireless Propagation Letters
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Brunel University London
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