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A Flexible Design Framework for Integrated Communication and Computing Receivers

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arxiv 2506.05944 v1 pith:WYTK5C7L submitted 2025-06-06 eess.SP

A Flexible Design Framework for Integrated Communication and Computing Receivers

classification eess.SP
keywords computingundercommunicationdatadesignsymbolsframeworkinterference
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We propose a framework to design integrated communication and computing (ICC) receivers capable of simultaneously detecting data symbols and performing over-the-air computing (AirComp) in a manner that: a) is systematically generalizable to any nomographic function, b) scales to a massive number of user equipments (UEs) and edge devices (EDs), c) supports the computation of multiple independent functions (streams), and d) operates in a multi-access fashion whereby each transmitter can choose to transmit either data symbols, computing signals or both. For the sake of illustration, we design the proposed multi-stream and multi-access method under an uplink setting, where multiple single-antenna UEs/EDs simultaneously transmit data and computing signals to a single multiple-antenna base station (BS)/access point (AP). Under the communication functionality, the receiver aims to detect all independent communication symbols while treating the computing streams as aggregate interference which it seeks to mitigate; and conversely, under the computing functionality, to minimize the distortion over the computing streams while minimizing their mutual interference as well as the interference due to data symbols. To that end, the design leverages the Gaussian belief propagation (GaBP) framework relying only on element-wise scalar operations coupled with closed-form combiners purpose-built for the AirComp operation, which allows for its use in massive settings, as demonstrated by simulation results incorporating up to 200 antennas and 300 UEs/EDs. The efficacy of the proposed method under different loading conditions is also evaluated, with the performance of the scheme shown to approach fundamental limiting bounds in the under/fully loaded cases.

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Cited by 2 Pith papers

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  1. Affine Filter Bank Modulation (AFBM): A Novel 6G ISAC Waveform with Low PAPR and OOBE

    eess.SP 2025-09 conditional novelty 5.0

    AFBM, a filter-banked chirp-precoded waveform, achieves lower PAPR and OOBE than AFDM in simulation while supporting a belief-propagation data receiver and an EM-assisted sensing receiver.

  2. Integrated Communication and Computing in Time-Varying mmWave Channels

    eess.SP 2025-09 conditional novelty 4.0

    A BiGaBP-based receiver jointly tracks channel, detects data, and computes an over-the-air sum in time-varying mmWave channels, with simulations showing small gaps to genie-aided bounds.