MMAICVLGIVFeb 8, 2025

Semantic-Aware Adaptive Video Streaming Using Latent Diffusion Models for Wireless Networks

arXiv:2502.05695v312 citationsh-index: 6IEEE wireless communications
Originality Incremental advance
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This work addresses bandwidth and quality issues for real-time video streaming in 5G and future networks, representing an incremental improvement by integrating existing techniques like LDMs and VFI.

This paper tackles the problem of high bandwidth usage and quality degradation in video streaming over wireless networks by proposing a semantic communication framework using latent diffusion models, achieving optimized bandwidth usage and outperforming state-of-the-art solutions in QoE and resource efficiency.

This paper proposes a novel Semantic Communication (SemCom) framework for real-time adaptive-bitrate video streaming by integrating Latent Diffusion Models (LDMs) within the FFmpeg techniques. This solution addresses the challenges of high bandwidth usage, storage inefficiencies, and quality of experience (QoE) degradation associated with traditional Constant Bitrate Streaming (CBS) and Adaptive Bitrate Streaming (ABS). The proposed approach leverages LDMs to compress I-frames into a latent space, offering significant storage and semantic transmission savings without sacrificing high visual quality. While retaining B-frames and P-frames as adjustment metadata to support efficient refinement of video reconstruction at the user side, the proposed framework further incorporates state-of-the-art denoising and Video Frame Interpolation (VFI) techniques. These techniques mitigate semantic ambiguity and restore temporal coherence between frames, even in noisy wireless communication environments. Experimental results demonstrate the proposed method achieves high-quality video streaming with optimized bandwidth usage, outperforming state-of-the-art solutions in terms of QoE and resource efficiency. This work opens new possibilities for scalable real-time video streaming in 5G and future post-5G networks.

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