English

Zak-OTFS over CP-OFDM

Signal Processing 2025-08-13 v2 Information Theory math.IT

Abstract

Zak-Orthogonal Time Frequency Space (Zak-OTFS) modulation has been shown to achieve significantly better performance compared to the standardized Cyclic-Prefix Orthogonal Frequency Division Multiplexing (CP-OFDM), in high delay/Doppler spread scenarios envisaged in next generation communication systems. Zak-OTFS carriers are quasi-periodic pulses in the delay-Doppler (DD) domain, characterized by two parameters, (i) the pulse period along the delay axis (``delay period") (Doppler period is related to the delay period), and (ii) the pulse shaping filter. An important practical challenge is enabling support for Zak-OTFS modulation in existing CP-OFDM based modems. In this paper we show that Zak-OTFS modulation with pulse shaping constrained to sinc filtering (filter bandwidth equal to the communication bandwidth BB) followed by time-windowing with a rectangular window of duration (T+Tcp)(T + T_{cp}) (TT is the symbol duration and TcpT_{cp} is the CP duration), can be implemented as a low-complexity precoder over standard CP-OFDM. We also show that the Zak-OTFS de-modulator with matched filtering constrained to sinc filtering (filter bandwidth BB) followed by rectangular time windowing over duration TT can be implemented as a low-complexity post-processing of the CP-OFDM de-modulator output. This proposed ``Zak-OTFS over CP-OFDM" architecture enables us to harness the benefits of Zak-OTFS in existing network infrastructure. We also show that the proposed Zak-OTFS over CP-OFDM is a family of modulations, with CP-OFDM being a special case when the delay period takes its minimum possible value equal to the inverse bandwidth, i.e., Zak-OTFS over CP-OFDM with minimum delay period.

Keywords

Cite

@article{arxiv.2508.03906,
  title  = {Zak-OTFS over CP-OFDM},
  author = {Saif Khan Mohammed and Saurabh Prakash and Muhammad Ubadah and Imran Ali Khan and Ronny Hadani and Shlomo Rakib and Shachar Kons and Yoav Hebron and Ananthanarayanan Chockalingam and Robert Calderbank},
  journal= {arXiv preprint arXiv:2508.03906},
  year   = {2025}
}
R2 v1 2026-07-01T04:36:07.078Z