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Toward Mixture-of-Experts Enabled Trustworthy Semantic Communication for 6G Networks

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arxiv 2409.15695 v1 pith:HYJUEARF submitted 2024-09-24 cs.NI cs.AIcs.CR

classification cs.NIcs.AIcs.CR
keywords communicationsemcomattackssecuritysemanticsystemexpertsheterogeneous
verification ladder T0 review T1 audit T2 compute T3 formal
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Semantic Communication (SemCom) plays a pivotal role in 6G networks, offering a viable solution for future efficient communication. Deep Learning (DL)-based semantic codecs further enhance this efficiency. However, the vulnerability of DL models to security threats, such as adversarial attacks, poses significant challenges for practical applications of SemCom systems. These vulnerabilities enable attackers to tamper with messages and eavesdrop on private information, especially in wireless communication scenarios. Although existing defenses attempt to address specific threats, they often fail to simultaneously handle multiple heterogeneous attacks. To overcome this limitation, we introduce a novel Mixture-of-Experts (MoE)-based SemCom system. This system comprises a gating network and multiple experts, each specializing in different security challenges. The gating network adaptively selects suitable experts to counter heterogeneous attacks based on user-defined security requirements. Multiple experts collaborate to accomplish semantic communication tasks while meeting the security requirements of users. A case study in vehicular networks demonstrates the efficacy of the MoE-based SemCom system. Simulation results show that the proposed MoE-based SemCom system effectively mitigates concurrent heterogeneous attacks, with minimal impact on downstream task accuracy.

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Cited by 1 Pith paper

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  1. A Survey of Secure Semantic Communications

    cs.CR 2025-01 conditional novelty 3.0 of 10

    A comprehensive survey of security and privacy challenges in semantic communication, categorized by the SemCom life cycle and paired with available defense technologies.

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