Dynamic-subarray with Quantized- And Fixed-phase Shifters for Terahertz Hybrid Beamforming

Longfei Yan, Chong Han, Nan Yang, Jinhong Yuan

    Research output: Contribution to journalConference articlepeer-review

    5 Citations (Scopus)

    Abstract

    Hybrid beamforming for terahertz (THz) communications is a promising technology for beyond 5G wireless systems, which has great potential to overcome very high propagation loss, mitigate hardware complexity, and achieve unprecedented data rates. In this paper, a dynamic-subarray (DS) architecture is investigated for THz hybrid beamforming systems. Specifically, we analyze both quantized-phase shifters (QPS) with finite phase levels, and fixed-phase shifters (FPS) with unaltered phases in the DS architecture, which significantly reduce hardware complexity and power consumption compared to using the infinite-resolution phase shifters (IPS). Furthermore, a generic low-complexity row-by-row (RBR) algorithm is derived for the proposed DS-structured hybrid beamforming with QPS and FPS. Extensive simulation results demonstrate that the RBR algorithm improves spectral efficiency and substantially reduces computational complexity. Compared to the DS-IPS, the DS-QPS architecture can achieve 98% spectral efficiency and 136% energy efficiency. In addition, we show that while the spectral efficiency of the DS-FPS architecture is 21% lower than the DS-QPS counterpart, the low-cost FPS provides 30% higher energy efficiency than QPS.

    Original languageEnglish
    Article number9348113
    JournalProceedings - IEEE Global Communications Conference, GLOBECOM
    Volume2020-January
    DOIs
    Publication statusPublished - Dec 2020
    Event2020 IEEE Global Communications Conference, GLOBECOM 2020 - Virtual, Taipei, Taiwan
    Duration: 7 Dec 202011 Dec 2020

    Fingerprint

    Dive into the research topics of 'Dynamic-subarray with Quantized- And Fixed-phase Shifters for Terahertz Hybrid Beamforming'. Together they form a unique fingerprint.

    Cite this