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Hybrid Digital-Analog Semantic Communications

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arxiv 2405.12580 v2 pith:PPHDX5NR submitted 2024-05-21 eess.SP eess.IV

classification eess.SPeess.IV
keywords semanticsemcomconstraintdigital-analogdistortionanalogchannelcommunication
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Digital and analog semantic communications (SemCom) face inherent limitations such as data security concerns in analog SemCom, as well as leveling-off and cliff-edge effects in digital SemCom. In order to overcome these challenges, we propose a novel SemCom framework and a corresponding system called HDA-DeepSC, which leverages a hybrid digital-analog approach for multimedia transmission. This is achieved through the introduction of digital-analog allocation and fusion modules. To strike a balance between data rate and distortion, we design new loss functions that take into account long-distance dependencies in the semantic distortion constraint, essential information recovery in the channel distortion constraint, and optimal bit stream generation in the rate constraint. Additionally, we propose denoising diffusion-based signal detection techniques, which involve carefully designed variance schedules and sampling algorithms to refine transmitted signals. Through extensive numerical experiments, we will demonstrate that HDA-DeepSC exhibits robustness to channel variations and is capable of supporting various communication scenarios. Our proposed framework outperforms existing benchmarks in terms of peak signal-to-noise ratio and multi-scale structural similarity, showcasing its superiority in semantic communication quality.

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Cited by 2 Pith papers

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

  1. Semantics-Guided Diffusion for Deep Joint Source-Channel Coding in Wireless Image Transmission

    cs.IT 2025-01 conditional novelty 6.0 of 10

    SGD-JSCC guides a diffusion denoiser with transmitted text or edge maps to clean the received latent features of a DeepJSCC image codec, improving perceptual quality at low SNR without pilot-based CSI.

  2. Pilot-guided Multimodal Semantic Communication for Audio-Visual Event Localization

    cs.SD 2024-12 conditional novelty 4.0 of 10

    A pilot-guided semantic communication system transmits audio and video features over noisy wireless channels and reports higher audio-visual event localization accuracy than unimodal and traditional digital baselines.

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