Effects of Fractional Time Delay as a Low-Power True Time Delay Digital Beamforming Architecture

被引:0
|
作者
Liebold, Zachary [1 ]
Broughton, Bob [2 ]
Shemelya, Corey [3 ]
机构
[1] Analog Devices Inc, Chelmsford, MA 01826 USA
[2] Analog Devices Inc, Wilmington, MA 01887 USA
[3] Univ Massachusetts Lowell, Dept Elect & Comp Engn, Lowell, MA 01854 USA
关键词
digital beamforming; true time delay; phased array; variable fractional delay; quantization sidelobes; DESIGN;
D O I
10.3390/electronics13142723
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
True time delay digital beamforming enables large squint-free bandwidths and high beamcounts, ideal for Low Earth Orbit (LEO) satellite communication links. This work proposes a true time delay architecture using Variable Fractional Delay (VFD). True time delay eliminates many analog beamforming performance constraints including inaccurate beam steering and limited beamcounts, while managing system quantization error. This article presents a method of implementing true time delay using a VFD digital filter with sufficient time resolution to minimize quantization error and enable both gigahertz bandwidths and sampling frequencies. Simulations of antenna patterns utilizing the proposed VFD digital filters demonstrate satisfactory LEO beamforming performance with only a 29-tap filter. The VFD filter was implemented using a Xilinx Virtex Ultrascale FPGA and demonstrated a 1077% reduction in dynamic power and a minimum 498% reduction in logic resources, with only a modest increase in multipliers required when compared to Farrow-based architectures previously proposed in the literature.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Photonic True-Time Delay Beamforming Based on Polarization-Domain Interferometers
    Drummond, Miguel V.
    Monteiro, Paulo P.
    Nogueira, Rogerio N.
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2010, 28 (17) : 2492 - 2498
  • [42] Wideband Digitally Controlled True Time Delay for Beamforming in a 40 nm CMOS Technology
    Shen, Jiachen
    Zhang, Yi
    Yang, Liu
    He, Lin
    Guo, Yufeng
    Gao, Hao
    2021 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS (ISCAS), 2021,
  • [43] A Wide-Range, Low-Power, All-Digital Delay-Locked Loop With Cyclic Half-Delay-Line Architecture
    Wang, Jinn-Shyan
    Cheng, Chun-Yuan
    Chou, Pei-Yuan
    Yang, Tzu-Yi
    IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2015, 50 (11) : 2635 - 2644
  • [44] NOVEL TECHNIQUE FOR TIME-DELAY BEAMFORMING
    POWELL, DG
    HOLT, AGJ
    ELECTRONICS LETTERS, 1992, 28 (02) : 190 - 192
  • [45] A Broadband Wide Field-of-view True-time delay-based Multi-Beamforming Architecture and Design
    Klaasa, No.199 Xiangzhang Ave. Hi-tech park, Hefei, China
    Asia Pacif Microwave Conf Proc APMC, 2022, (857-859): : 857 - 859
  • [46] A Broadband Wide Field-of-view True-time delay-based Multi-Beamforming Architecture and Design
    Jiang Lihui
    Cao Rui
    Tao Xiaohui
    Li zhuang
    Yan, Zhang
    2022 ASIA-PACIFIC MICROWAVE CONFERENCE (APMC), 2022, : 857 - 859
  • [47] Microcontroller implementation of Digital Fractional Order Controllers for Time Delay Processes
    Both, R.
    Muresan, C. -I.
    Dulf, E. -H.
    Dulf, F. -V.
    2013 21ST MEDITERRANEAN CONFERENCE ON CONTROL AND AUTOMATION (MED), 2013, : 1445 - 1450
  • [48] Time-Delay and Fractional Derivatives
    J.A. Tenreiro Machado
    Advances in Difference Equations, 2011
  • [49] Time-Delay and Fractional Derivatives
    Tenreiro Machado, J. A.
    ADVANCES IN DIFFERENCE EQUATIONS, 2011,
  • [50] MCM low-cost true time delay phase shifter
    Avdjiiski, B
    Arnaudov, R
    Kostov, A
    2005 28TH INTERNATIONAL SPRING SEMINAR ON ELECTRONICS TECHNOLOGY, 2005, : 42 - 45