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    Kívánságlista
    Security and Privacy in Communication Networks: 21st EAI International Conference, SecureComm 2025, Xiangtan, China, July 4–6, 2025, Proceedings, Part III

    Security and Privacy in Communication Networks by Liang, Wei; Kung, Sun-Yuan; Qiu, Meikang;

    21st EAI International Conference, SecureComm 2025, Xiangtan, China, July 4–6, 2025, Proceedings, Part III

    Sorozatcím: Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering;

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    Hosszú leírás:

    "

    This four-volume set LNISCT 687-690 constitutes the proceedings of the 21st EAI International Conference on Security and Privacy in Communication Networks, SecureComm 2025, held in Xiangtan, China, during July 4 - 6, 2025.

    The 119 full papers included in these volumes were carefully reviewed and selected from 341 submissions. They are organized in the following topical sections:

    Part I: Distributed and Network Security; ML/AI Security.

    Part II: ML/AI Security; CyberSecurity.

    Part III: CyberSecurity; Cryptography and Authentication.

    Part IV: Cryptography and Authentication; Security and Optimization.

    "

    Több

    Tartalomjegyzék:

    .- CyberSecurity.

    .- XRwatcher: A Detection Scheme for XR Privacy Speculation Attacks Based on Traffic Analysis.

    .- Causal-Driven Multi-Objective Grey Wolf Optimization Framework for Multidimensional Redundant IoT Traffic Intrusion Detection.

    .- Comprehensive Commits Security Testing with Enhanced Multi-Target Directed Fuzzing.

    .- FlipStress: Noise Injection Defenses Against CPU-cache-based Web Attacks.

    .- Clark: a Transferable APT Detection Framework via Self-Supervised Contrastive Learning.

    .- Document Image Tampering Detection based on Multi-domain Feature Consistency.

    .- CLATM: A Contrastive Learning-Based FDIA Detection Method with Attention Timestamp Masking for REIoT.

    .- Prompting Large Language Models for Data-Flow Analysis: Addressing Common Errors for Better Reasoning.

    .- SG-SCA: An Interpretable Side-Channel Analysis Model Based on Shapelet and Graph Attention Network.

    .- RADBench: A Comprehensive Benchmark for Internet Routing Anomaly Detection.

    .- Complementary Ensemble Empirical Mode Decomposition and Permutation Entropy-Empowered Network Traffic Anomaly Detection for Secure QUIC Communications.

    .- Cryptography and Authentication.

    .- A lightweight authentication protocol for resource constrained WBAN.

    .- A Novel Multi-Graph Spatial-Temporal Graph Neural Network Model for Traffic Prediction.

    .- A Social-Relationship and Geospatial-Aware Incentive Mechanism for Privacy-Preserving Mobile Crowdsensing.

    .- An Intrusion Detection-Based Location Privacy Protection Algorithm for VANETs.

    .- DASPN: A Multi-level Security Protection Model for Northbound Interface Based on Dynamic Access Control.

    .- Decentralized Role Rotation Privacy Protection in Federated Learning.

    .- ECC-Based Certificate-less Aggregate Signatures Scheme for VANETs.

    .- Efficient Privacy-Preserving and Verifiable Arbitrary Polygon Range Query in Cloud Computing.

    .- ESKNN:Efficient Secure KNN Query Based On 3-Party Secure Computation.

    .- Privacy-Enhanced Multi-Modal Feature Fusion for E Commerce: A Novel Approach to Image and Text Retrieval.

    .- Privacy-preserving Preselection for Face Identification Based on Packing.

    .- Privacy-Preserving Probability Fingerprinting Scheme with Collusion Resistance for Relational Databases.

    .- Protecting Medical Image Privacy by Using Chaos Encryption and Blockchain.

    .- Revocable and Verifiable Key Aggregate Searchable Encryption for Flexible Data Sharing.

    .- SAFE: A Fast Privacy-Preserving Scheme for Multi-Client Face Verification.

    .- Unbalanced Secret Labeled Private Set Intersection via Scalable Dual-Load Bloom Filter.

    .- Dynamic Dual-Anonymous Lightweight Certificateless Authentication Protocol for Social IoT-Assisted V2G.

    .- HIDE: Anonymous Hop-by-Hop Identity Authentication Based on Dynamic Address Label Embedding.

    .- Now Let’s Make It Physical! Enabling Trusted Certificate Issuance in PKI via Physical Bindings for CAs.

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