6G OFDM Communications with High Mobility Transceivers and Scatterers via Angle-Domain Processing and Deep Learning
Paper in proceeding, 2026

High-mobility communications, which are crucial for next-generation wireless systems, cause the orthogonal frequency division multiplexing (OFDM) waveform to suffer from strong intercarrier interference (ICI) due to the Doppler effect. In this work, we propose a novel receiver architecture for OFDM that leverages the angular domain to separate multipaths. A block-type pilot is sent to estimate direction-of-arrivals (DoAs), propagation delays, and channel gains of the multipaths. Subsequently, a decision-directed (DD) approach is employed to estimate and iteratively refine the Dopplers. Two different approaches are investigated to provide initial Doppler estimates: an error vector magnitude (EVM)-based method and a deep learning (DL)-based method. Simulation results reveal that the DL-based approach allows for constant bit error rate (BER) performance up to the maximum 6G speed of 1000 km/h.

ICI cancellation

OFDM

deep learning

data detection

parameter estimation

Author

Mauro Marchese

Universita degli studi di Pavia

Musa Furkan Keskin

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Henk Wymeersch

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Pietro Savazzi

Universita degli studi di Pavia

Consorzio Nazionale Interuniversitario per le Telecomunicazioni (CNIT)

IEEE International Conference on Communications

15503607 (ISSN)


9798319542090 (ISBN)

2026 IEEE International Conference on Communications, ICC 2026
Glasgow, United Kingdom,

Areas of Advance

Information and Communication Technology

Subject Categories (SSIF 2025)

Telecommunications

DOI

10.1109/ICC59461.2026.11587763

More information

Latest update

7/28/2026