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Wireless Resource Optimization in Hybrid Semantic/Bit Communication Networks

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arxiv 2404.04162 v5 pith:2HLSZXKI submitted 2024-04-05 cs.NI cs.SYeess.SY

classification cs.NIcs.SYeess.SY
keywords communicationresourcesemanticsemcomqueuingbitcomhsb-nethybrid
verification ladder T0 review T1 audit T2 compute T3 formal

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Recently, semantic communication (SemCom) has shown great potential in significant resource savings and efficient information exchanges, thus naturally introducing a novel and practical cellular network paradigm where two modes of SemCom and conventional bit communication (BitCom) coexist. Nevertheless, the involved wireless resource management becomes rather complicated and challenging, given the unique background knowledge matching and time-consuming semantic coding requirements in SemCom. To this end, this paper jointly investigates user association (UA), mode selection (MS), and bandwidth allocation (BA) problems in a hybrid semantic/bit communication network (HSB-Net). Concretely, we first identify a unified performance metric of message throughput for both SemCom and BitCom links. Next, we specially develop a knowledge matching-aware two-stage tandem packet queuing model and theoretically derive the average packet loss ratio and queuing latency. Combined with practical constraints, we then formulate a joint optimization problem for UA, MS, and BA to maximize the overall message throughput of HSB-Net. Afterward, we propose an optimal resource management strategy by utilizing a Lagrange primal-dual transformation method and a preference list-based heuristic algorithm with polynomial-time complexity. Numerical results not only demonstrate the accuracy of our analytical queuing model, but also validate the performance superiority of our proposed strategy compared with different benchmarks.

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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. Collaborative Knowledge Sharing-empowered Effective Semantic Rate Maximization for Two-tier Semantic-Bit Communication Networks

    eess.SP 2025-01 conditional novelty 5.0 of 10

    A two-tier edge network jointly optimizes knowledge sharing, semantic extraction, and resource allocation to maximize a generalized effective semantic transmission rate under accuracy and delay constraints.

  2. Knowledge Sharing-enabled Semantic Rate Maximization for Multi-cell Task-oriented Hybrid Semantic-Bit Communication Networks

    eess.SP 2025-01 reject novelty 5.0 of 10

    A hybrid semantic/bit transmission scheme with proactive knowledge sharing is optimized to maximize the effective semantic rate in multi-cell networks under delay and accuracy constraints.

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