Group-wise Semantic Splitting Multiple Access for Multi-User Semantic Communication

Fuente: arXiv
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Autori principali: Koh, Jungyeon, Noh, Hyeonho, Yang, Hyun Jong
Natura: Preprint
Pubblicazione: 2025
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author Koh, Jungyeon
Noh, Hyeonho
Yang, Hyun Jong
author_facet Koh, Jungyeon
Noh, Hyeonho
Yang, Hyun Jong
contents In this letter, we propose a group-wise semantic splitting multiple access framework for multi-user semantic communication in downlink scenarios. The framework begins by applying a balanced clustering mechanism that groups users based on the similarity of their semantic characteristics, enabling the extraction of group-level common features and user-specific private features. The base station then transmits the common features via multicast and the private features via unicast, effectively leveraging both shared and user-dependent semantic information. To further enhance semantic separability and reconstruction fidelity, we design a composite loss function that integrates a reconstruction loss with a repulsion loss, improving both the accuracy of semantic recovery and the distinctiveness of common embeddings in the latent space. Simulation results demonstrate that the proposed method achieves up to 3.26x performance improvement over conventional schemes across various channel conditions, validating its robustness and semantic efficiency for next-generation wireless networks.
format Preprint
id arxiv_https___arxiv_org_abs_2511_21411
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Group-wise Semantic Splitting Multiple Access for Multi-User Semantic Communication
Koh, Jungyeon
Noh, Hyeonho
Yang, Hyun Jong
Signal Processing
In this letter, we propose a group-wise semantic splitting multiple access framework for multi-user semantic communication in downlink scenarios. The framework begins by applying a balanced clustering mechanism that groups users based on the similarity of their semantic characteristics, enabling the extraction of group-level common features and user-specific private features. The base station then transmits the common features via multicast and the private features via unicast, effectively leveraging both shared and user-dependent semantic information. To further enhance semantic separability and reconstruction fidelity, we design a composite loss function that integrates a reconstruction loss with a repulsion loss, improving both the accuracy of semantic recovery and the distinctiveness of common embeddings in the latent space. Simulation results demonstrate that the proposed method achieves up to 3.26x performance improvement over conventional schemes across various channel conditions, validating its robustness and semantic efficiency for next-generation wireless networks.
title Group-wise Semantic Splitting Multiple Access for Multi-User Semantic Communication
topic Signal Processing
url https://arxiv.org/abs/2511.21411