header

The Monthly Newsletter of IEEE Vehicular Technology Society—November 2025

header
Join Our LinkedIn Group Join Our LinkedIn Group
spacer spacer
From the IEEE Transactions on Vehicular Technology
MIMO-OFDM Integrated Sensing and Communication
Awadhesh Gupta, Suraj Srivastava, Aditya K. Jagannatham, and Lajos Hanzo

Full title—Beam-Squint Aware Sparse Techniques for Massive MIMO-OFDM Integrated Sensing and Communication

Novel techniques are conceived for direction-of-arrival (DoA), range, velocity, and reflection coefficient estimation of multiple moving targets in a beam-squint aware massive multiple-input multiple-output (mMIMO) orthogonal frequency division multiplexing (OFDM) system designed for integrated sensing and communication (ISAC) relying on a hybrid beamforming architecture.

A grid-aligned sparse Bayesian learning (GA-BL) solution is proposed for determining the DoA, delay, and Doppler shift parameters of these targets. Further improvements are made by formulating a multi-measurement vector (MMV) based sparse problem for estimating the target parameters.

Then, by leveraging this model, we dispense with the grid-aligned assumption, and its gridless Doppler-based MMV BL (GLD-MBL) counterpart is introduced. The latter offers three key advantages in comparison to GA-BL: superior Doppler estimation performance, the ability to estimate gridless Doppler shift, and significantly reduced computational complexity.

To further enhance the estimation performance, a block-sparse problem is formulated for the estimation of the target parameters under the assumption of gridless Doppler. The gridless Doppler block sparse BL (GLD-BLKBL) algorithm is then harnessed for exploiting both the block sparsity and intrablock correlations, thus achieving notable estimation performance improvements over the GA-BL and GLD-MBL approaches in the high signal-to-noise ratio (SNR) regime.

Finally, simulation results are provided to illustrate the improved performance of the proposed methodologies across multiple performance metrics. These results highlight the superiority of our solutions over conventional sparse recovery techniques.

Full Article: IEEE Transactions on Vehicular Technology, Early Access

spacer
spacer
spacer spacer
Previous Article Previous Article
   
Return to Top Return to Top
spacer spacer
Home Return Home
spacer spacer
spacer
spacer
In This Issue
Message from the EiC
spacer
Call for Submissions
MVC 2026
spacer
Chapter News—Ecuador
IEEE Elevate: Drones and Mobility
spacer
Chapter News—Malaysia
Industry Visit to my5G Portal
spacer
Chapter News—India
IEEE INDISCON 2025
spacer
Connected and Automated Vehicles
Robotaxi Services Across the Globe
spacer
Transportation Systems
Automation Versus Autonomous
spacer
Mobile Radio
Joint Workshop on 6G Coordination
spacer
From the IEEE Open Journal of Vehicular Technology
Recent Articles, and a Special Issue on 6G-Enabled V2X Networks
spacer
From the IEEE Transactions on Vehicular Technology
MIMO-OFDM Integrated Sensing and Communication
spacer

Editor-in-Chief

F. Richard Yu

Jump to
Conference News
Jump to
Pubs and Videos

IEEE VTS Website

News
Member Resources
Conferences
Publications
Tech Communities
About Us
spacer

CONFERENCE NEWS and LATEST UPDATES

INNOVARail 2026

26–28 May 2026

Champaign, IL USA

Abstracts accepted: 3 Nov // Full papers for review: 8 Dec

IEEE VTC2026-Spring

9–12 June 2026

Nice, France

Full papers due for review by 10 December 2025

IEEE VTC2025-Fall

6–9 September 2026

Boston, MA USA

Full papers due for review by 14 February 2026

MVC 2026

hosted by VPPC 2026

Location to follow

The 2026 IEEE VTS Motor Vehicles Challenge is on!

 
FREE for VTS Members
VTS Resource Center
VTS Resource Center
A Multimedia
Educational Library
IEEE Vehicular
Technology Magazine

Volume 20, Number 3
IEEE Open Journal of
Vehicular Technology
IEEE Open Journal on Vehicular Technology
IEEE Transactions on
Vehicular Technology

Volume 74, Number 10
Browse all
Past Issues of
  50 most popular VTM articles   50 most popular TVT articles  
header
Copyright © 2025 IEEE.
Vehicular Technology Society Homepage IEEE Homepage