A discrete model for the efficient analysis of time-varying narrowband communication channels

被引:0
|
作者
Niklas Grip
Götz E. Pfander
机构
[1] Luleå University of Technology,Department of Mathematics
[2] Jacobs Univeristy,School of Engineering and Science
关键词
Communication channel model; Spreading function; Discretization; Hilbert–Schmidt operators; Gabor systems;
D O I
暂无
中图分类号
学科分类号
摘要
We derive an efficient numerical algorithm for the analysis of certain classes of Hilbert–Schmidt operators that naturally occur in models of wireless radio and sonar communications channels. We show that many narrowband finite lifelength systems such as wireless radio communications can be well modelled by smooth and compactly supported spreading functions. Further, we exploit this fact to derive a fast algorithm for computing the matrix representation of such operators with respect to well time-frequency localized Gabor bases (such as pulseshaped OFDM bases). Hereby we use a minimum of approximations, simplifications, and assumptions on the channel. Moreover, we use a multivariate setting to allow for applications to, for example, antenna arrays. The derived algorithm and software can be used, for example, for comparing how different system settings and pulse shapes affect the diagonalization properties of an OFDM system acting on a given channel.
引用
收藏
页码:3 / 40
页数:37
相关论文
共 50 条
  • [1] A discrete model for the efficient analysis of time-varying narrowband communication channels
    Grip, Niklas
    Pfander, Goetz E.
    [J]. MULTIDIMENSIONAL SYSTEMS AND SIGNAL PROCESSING, 2008, 19 (01) : 3 - 40
  • [2] STRUCTURED ESTIMATION OF TIME-VARYING NARROWBAND WIRELESS COMMUNICATION CHANNELS
    Beygi, Sajjad
    Mitra, Urbashi
    [J]. 2017 IEEE INTERNATIONAL CONFERENCE ON ACOUSTICS, SPEECH AND SIGNAL PROCESSING (ICASSP), 2017, : 3529 - 3533
  • [3] The discrete-time canonical model of time-varying dispersive channels
    Liu, YL
    Peng, QC
    [J]. 2002 INTERNATIONAL CONFERENCE ON COMMUNICATIONS, CIRCUITS AND SYSTEMS AND WEST SINO EXPOSITION PROCEEDINGS, VOLS 1-4, 2002, : 272 - 276
  • [4] ON MEASUREMENT AND USE OF TIME-VARYING COMMUNICATION CHANNELS
    ROOT, WL
    [J]. INFORMATION AND CONTROL, 1965, 8 (04): : 390 - &
  • [5] A wavelet packet based model for time-varying wireless communication channels
    Zhang, HB
    Fan, HH
    Lindsey, A
    [J]. 2001 IEEE THIRD WORKSHOP ON SIGNAL PROCESSING ADVANCES IN WIRELESS COMMUNICATIONS, PROCEEDINGS, 2001, : 50 - 53
  • [6] ANALYSIS ON THE TIME-VARYING GAP OF DISCRETE TIME-VARYING LINEAR SYSTEMS
    Liu, Liu
    Lu, Yufeng
    [J]. OPERATORS AND MATRICES, 2017, 11 (02): : 533 - 555
  • [7] Discrete time-varying delayed systems for secure communication
    Millerioux, Gilles
    Parriaux, Jeremy
    [J]. 2015 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS (ISCAS), 2015, : 870 - 873
  • [8] Secure Communication with Beamforming and Jamming in Time-Varying Channels
    Yu, Heejung
    Khalid, Waqas
    [J]. 2016 EIGHTH INTERNATIONAL CONFERENCE ON UBIQUITOUS AND FUTURE NETWORKS (ICUFN), 2016, : 218 - 221
  • [9] AN EFFICIENT TIME-VARYING LOUDNESS MODEL
    Ward, Dominic
    Athwal, Cham
    Koekueer, Muenevver
    [J]. 2013 IEEE WORKSHOP ON APPLICATIONS OF SIGNAL PROCESSING TO AUDIO AND ACOUSTICS (WASPAA), 2013,
  • [10] On Discrete-Time Modeling of Time-Varying WSSUS Fading Channels
    Sgraja, Christian
    Tao, Jun
    Xiao, Chengshan
    [J]. IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2010, 59 (07) : 3645 - 3651