Semantic Communication Enhanced by Knowledge Graph Representation Learning

被引:0
作者
Hello, Nour [1 ]
Di Lorenzo, Paolo [2 ]
Strinati, Emilio Calvanese [1 ]
机构
[1] Univ Grenoble Alpes, CEA Leti, F-38000 Grenoble, France
[2] Sapienza Univ Rome, Rome, Italy
来源
2024 IEEE 25TH INTERNATIONAL WORKSHOP ON SIGNAL PROCESSING ADVANCES IN WIRELESS COMMUNICATIONS, SPAWC 2024 | 2024年
关键词
Semantic communication; knowledge graph; graph neural network; large language models;
D O I
10.1109/SPAWC60668.2024.10694291
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
This paper investigates the advantages of representing and processing semantic knowledge extracted into graphs within the emerging paradigm of semantic communications. The proposed approach leverages semantic and pragmatic aspects, incorporating recent advances on large language models (LLMs) to achieve compact representations of knowledge to be processed and exchanged between intelligent agents. This is accomplished by using the cascade of LLMs and graph neural networks (GNNs) as semantic encoders, where information to be shared is selected to be meaningful at the receiver. The embedding vectors produced by the proposed semantic encoder represent information in the form of triplets: nodes (semantic concepts entities), edges(relations between concepts), nodes. Thus, semantic information is associated with the representation of relationships among elements in the space of semantic concept abstractions. In this paper, we investigate the potential of achieving high compression rates in communication by incorporating relations that link elements within graph embeddings. We propose sending semantic symbols solely equivalent to node embeddings through the wireless channel and inferring the complete knowledge graph at the receiver. Numerical simulations illustrate the effectiveness of leveraging knowledge graphs to semantically compress and transmit information.
引用
收藏
页码:876 / 880
页数:5
相关论文
共 26 条
[11]  
Li AM, 2024, Arxiv, DOI arXiv:2304.00848
[12]   Wireless End-to-End Image Transmission System Using Semantic Communications [J].
Lokumarambage, Maheshi U. ;
Gowrisetty, Vishnu Sai Sankeerth ;
Rezaei, Hossein ;
Sivalingam, Thushan ;
Rajatheva, Nandana ;
Fernando, Anil .
IEEE ACCESS, 2023, 11 :37149-37163
[13]   The Hexa-X Project Vision on Artificial Intelligence and Machine Learning-Driven Communication and Computation Co-Design for 6G [J].
Merluzzi, Mattia ;
Borsos, Tamas ;
Rajatheva, Nandana ;
Benczur, Andras A. ;
Farhadi, Hamed ;
Yassine, Taha ;
Mueck, Markus Dominik ;
Barmpounakis, Sokratis ;
Strinati, Emilio Calvanese ;
Dampahalage, Dilin ;
Demestichas, Panagiotis ;
Ducange, Pietro ;
Filippou, Miltiadis C. ;
Baltar, Leonardo Gomes ;
Haraldson, Johan ;
Karacay, Leyli ;
Korpi, Dani ;
Lamprousi, Vasiliki ;
Marcelloni, Francesco ;
Mohammadi, Jafar ;
Rajapaksha, Nuwanthika ;
Renda, Alessandro ;
Uusitalo, Mikko A. .
IEEE ACCESS, 2023, 11 :65620-65648
[14]  
Morris C., 1971, WRITINGS GEN THEORY
[15]  
Qiao Lan, 2021, Journal of Communications and Information Networks, V6, P336, DOI 10.23919/JCIN.2021.9663101
[16]  
Reimers N, 2019, 2019 CONFERENCE ON EMPIRICAL METHODS IN NATURAL LANGUAGE PROCESSING AND THE 9TH INTERNATIONAL JOINT CONFERENCE ON NATURAL LANGUAGE PROCESSING (EMNLP-IJCNLP 2019), P3982
[17]  
Sana Mohamed, 2022, 2022 IEEE 19th Annual Consumer Communications & Networking Conference (CCNC), P631, DOI 10.1109/CCNC49033.2022.9700645
[18]   Semantic Channel Equalizer: Modelling Language Mismatch in Multi-User Semantic Communications [J].
Sana, Mohamed ;
Strinati, Emilio Calvanese .
IEEE CONFERENCE ON GLOBAL COMMUNICATIONS, GLOBECOM, 2023, :2221-2226
[19]  
Strinati EC, 2024, Arxiv, DOI arXiv:2402.07573
[20]   6G networks: Beyond Shannon towards semantic and goal-oriented communications [J].
Strinati, Emilio Calvanese ;
Barbarossa, Sergio .
COMPUTER NETWORKS, 2021, 190