Abstract
To address the bandwidth limitations encountered by existing decoupling methods during the global integration process of base station antennas, a radiative deep-subwavelength frequency-selective surface (RFSS)-based cross-band decoupling method is proposed. The RFSS is formed by a deep-subwavelength FSS whose external profile is defined by a well-optimized narrow frame. It is implemented to not only be transparent for high-band (HB) electromagnetic waves but also effectively radiates low-band (LB) ones. To validate this concept, a dual-band base station antenna, which comprises an RFSS-based LB antenna and a 2 × 2 HB subarray, is proposed. Furthermore, we undertake a detailed analysis of the operational mechanism underlying the proposed RFSS-based LB antenna. In addition, a prototype for proof of concept is fabricated and measured. The results demonstrate that the LB antenna operates within a relatively wideband of 1.4-2.7 GHz (63.4%), featuring a low profile of 0.25λlc (at the center frequency of LB), and the HB antenna operates at 3.3-4.2 GHz (24%).
| Original language | English |
|---|---|
| Pages (from-to) | 771-781 |
| Number of pages | 11 |
| Journal | IEEE Transactions on Antennas and Propagation |
| Volume | 73 |
| Issue number | 2 |
| DOIs | |
| State | Published - 2025 |
| Externally published | Yes |
Keywords
- 5G base station antenna
- cross-band decoupling
- dual-band array
- pattern restoration
- radiative deep-subwavelength frequency selective surface (RFSS)
- wideband antenna
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