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Design of compact two‐port dual‐band dual‐polarized MIMO antenna for CBRS and WLAN sub‐6‐GHz applications

Summary This communication presents a compact field de‐correlation lines integrated dual band with dual‐polarized (LP & CP) multiple‐input multiple‐output (MIMO) antenna for the fifth generation (5G) sub‐6‐GHz wireless communication systems. Dual working bandwidths, smaller interelement gaps, an...

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Bibliographic Details
Published in:International journal of communication systems 2023-05, Vol.36 (8), p.n/a
Main Authors: Krishna Kanth Varma, Penmatsa, Narayanaswamy, Nagesh Kallollu
Format: Article
Language:English
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Summary:Summary This communication presents a compact field de‐correlation lines integrated dual band with dual‐polarized (LP & CP) multiple‐input multiple‐output (MIMO) antenna for the fifth generation (5G) sub‐6‐GHz wireless communication systems. Dual working bandwidths, smaller interelement gaps, and superior isolation within the MIMO components are the distinguishing characteristics that give the proposed MIMO system an aspect of novelty. The modeled MIMO antenna has compact configurations of 20 × 21 × 0.8 mm3. The unit cell consists of a microstrip feed line with optimized rectangular slots branches etched from the radiated patch. The MIMO module is generated by the antiparallel replication of a single unit cell. To enhance the isolation, two rectangular slots are incorporated on the patch between the unit elements, which act as field de‐correlation lines. The MIMO identity is supported by diversity performance calculations in terms of ECC, DG, and TARC. Simulated and measured counterparts are found in the agreement. This communication presents a compact field de‐correlation lines integrated dual band with dual‐polarized (LP & CP) multiple‐input multiple‐output (MIMO) antenna for the fifth generation (5G) sub‐6‐GHz wireless communication systems. Dual working bandwidths, smaller interelement gaps, and superior isolation within the MIMO components are the distinguishing characteristics that give the proposed MIMO system an aspect of novelty.
ISSN:1074-5351
1099-1131
DOI:10.1002/dac.5460