English

Ambiguity Function Analysis of Pilot-Embedded Random OFDM Signals

Signal Processing 2026-07-20 v1

Abstract

This paper investigates the statistical ambiguity functions (AFs) of orthogonal frequency division multiplexing (OFDM) waveforms that incorporate deterministic unit-modulus pilot symbols and random data payloads for integrated sensing and communication (ISAC). We derive analytical expressions for the mean squared discrete periodic ambiguity function (DP-AF) and fast-slow-time ambiguity function (FST-AF) of such pilot-embedded OFDM signals. Our analysis demonstrates that, under a fixed signal length and constellation scheme, the mean squared DP-AF depends jointly on the pilot patterns, pilot symbols and number of pilots, while the mean squared FST-AF relies only on the number of pilots. Numerical simulations closely match the theoretical expressions. Furthermore, in numerical results, we show that different pilot patterns correspond to DP-AF with distinct characteristics, offering relevant considerations for pilot design in communication-centric ISAC systems.

Cite

@article{arxiv.2607.17663,
  title  = {Ambiguity Function Analysis of Pilot-Embedded Random OFDM Signals},
  author = {Jialin Wu and Fan Liu and Ying Zhang and Yifeng Xiong and Jie Yang and Shi Jin},
  journal= {arXiv preprint arXiv:2607.17663},
  year   = {2026}
}

Comments

6 pages, 3 figures