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Beam Training for Pinching-Antenna Systems (PASS)

  • Suyu Lv
  • , Yuanwei Liu
  • , Zhiguo Ding
    • Beijing Polytechnic Univ
    • University of Hong Kong
    • Kyung Hee University
    • University of Manchester

    Research output: Contribution to journalArticlepeer-review

    10 Scopus citations

    Abstract

    This article investigates the beam training design for pinching-antenna systems (PASS) in the near-field communication region, where single-waveguide-single-user (SWSU), single-waveguide-multi-user (SWMU) and multi-waveguide-multi-user (MWMU) scenarios are considered. For SWSU-PASS, we design a scalable codebook, based on which we propose a three-stage beam training (3SBT) scheme. Specifically, 1) firstly, the 3SBT scheme utilizes one activated pinching antenna to obtain a coarse one-dimensional location at the first stage; 2) secondly, it achieves further phase matching with an increased number of activated antennas at the second stage; 3) finally, it realizes precise beam alignment through an exhaustive search at the third stage. For SWMU-PASS, based on the scalable codebook design, we propose an improved 3SBT scheme to support non-orthogonal multiple access (NOMA) transmission. For MWMU-PASS, we first present a generalized expression of the received signal based on the partially-connected hybrid beamforming structure. Furthermore, we introduce an increased-dimensional scalable codebook design, based on which an increased-dimensional 3SBT scheme is proposed. Numerical results reveal that: 1) the proposed beam training schemes can significantly reduce the training overhead compared to the two-dimensional exhaustive search, while maintaining the same training accuracy; 2) PASS yields better flexibility and improved performance compared to several benchmark schemes.

    Original languageBritish English
    Pages (from-to)3626-3642
    Number of pages17
    JournalIEEE Transactions on Wireless Communications
    Volume25
    DOIs
    StatePublished - 2026

    Keywords

    • Beam training
    • codebook design
    • near-field communications (NFC)
    • pinching-antenna systems (PASS)

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