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AFDM-Enabled Integrated Sensing and Communication: Theoretical Framework and Pilot Design

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arxiv 2502.14203 v2 pith:IGYCQ3P5 submitted 2025-02-20 eess.SP

AFDM-Enabled Integrated Sensing and Communication: Theoretical Framework and Pilot Design

classification eess.SP
keywords afdmdesignsensingisacperformancepilotchannelcommunication
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The integrated sensing and communication (ISAC) has been envisioned as one representative usage scenario of sixth-generation (6G) network. However, the unprecedented characteristics of 6G, especially the doubly dispersive channel, make classical ISAC waveforms rather challenging to guarantee a desirable performance level. The recently proposed affine frequency division multiplexing (AFDM) can attain full diversity even under doubly dispersive effects, thus becoming a competitive candidate for next-generation ISAC waveforms. Relevant investigations are still at an early stage, which involve only straightforward design lacking explicit theoretical analysis. This paper provides an in-depth investigation on AFDM waveform design for ISAC applications. Specifically, the closed-form Cr\'{a}mer-Rao bounds of target detection for AFDM are derived, followed by a demonstration on its merits over existing counterparts. Furthermore, we formulate the ambiguity function of the pilot-assisted AFDM waveform for the first time, revealing conditions for stable sensing performance. To further enhance both the communication and sensing performance of the AFDM waveform, we propose a novel pilot design by exploiting the characteristics of AFDM signals. The proposed design is analytically validated to be capable of optimizing the ambiguity function property and channel estimation accuracy simultaneously as well as overcoming the sensing and channel estimation range limitation originated from the pilot spacing. Numerical results have verified the superiority of the proposed pilot design in terms of dual-functional performance.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. A Cancellation Mechanism in AFDM Radar Sensing: Exact Fisher Information and Delay-Doppler Decoupling

    eess.SP 2026-06 conditional novelty 7.0

    AFDM radar has an exact closed-form Fisher information matrix due to likelihood cancellation from the chirp-periodic prefix, proving less delay-Doppler coupling than OFDM with quadratic delay CRB improvement as chirp ...

  2. Frame-Based AFDM-ISAC Waveform Design With Chirp-Enabled Pulse Compression

    eess.SP 2026-07 unverdicted novelty 6.0

    Proposes AFDM-ISAC waveform with chirp subcarrier frame structure, analog chirp-compression receiver, and GCE-BEM-based channel estimation for integrated sensing and communications.

  3. AFDM: Evolving OFDM Towards 6G+

    eess.SP 2026-02 conditional novelty 4.0

    AFDM is presented as an OFDM-backward-compatible 6G+ waveform whose added transceiver cost is two O(N) chirp rotations, supported by a generalized pulse-shaped FDFD channel formulation.