Published June 19, 2025 | Version v1
Journal article Open

Channel Estimation and Equalization of Zero-Padded Waveforms in Doubly-Dispersive Channels

  • 1. ROR icon InterDigital (United Kingdom)
  • 2. ROR icon Universidad Carlos III de Madrid
  • 3. Universidad Carlos III de Madrid - Campus de Leganés

Description

This paper introduces a novel Reference Signal and a channel estimation and equalization technique for Zero-Padded waveforms, like ZP-OFDM and the recently proposed FM-OFDM, under doubly-dispersive channels with Doppler and phase noise. We describe a two-stage pilot structure aimed to separately capture the long-term and short-term channel variations and a piecewise estimation and equalization technique, based on approximation of the time-varying channel impulse response by a set of time-invariant channel responses, which are independently equalized and further combined to compensate the channel’s dispersion. Design criteria for the proposed Reference Signal are also given. Numerical results under high phase noise show that piecewise-equalized ZP-OFDM can outperform MMSE-equalized CP-OFDM with CPE compensation, thus avoiding the need of an additional Reference Signal for phase noise mitigation. Results under high mobility demonstrate the superiority of piecewise-equalized FM-OFDM and ZP-OFDM waveforms over MMSE-equalized OTFS and CP-OFDM, outperforming also the highly complex DFE-equalized OTFS for certain modulation orders, without the need to estimate any Doppler components. The degradation incurred by the proposed realistic piecewise estimation technique with respect to ideal estimation depends on the richness of the channel’s multipath profile rather than its Doppler spread.

Files

IEEE_TCOM_Channel_Estimation_and_Equalization_of_ZP_Waveforms_in_Doubly_Dispersive_Channels-final.pdf

Additional details

Funding

European Union
6G eXperimental Research infrastructure to enable next-generation XR services 101096838
European Union
CHIST-ERA