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CyberC (IEEE TCCC) 2024 : CyberC (IEEE TCCC) 2024 – The 16th Int. Conference on Cyber-Enabled Distributed Computing and Knowledge Discovery | |||||||||||||||
Link: https://cyberc.org/ | |||||||||||||||
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Call For Papers | |||||||||||||||
CyberC (IEEE TCCC) 2024 – The 16th Int. Conference on Cyber-Enabled Distributed Computing and Knowledge Discovery
IEEE Conference Record #: 62439 Location & Date: Guangzhou, China, October 24-26, 2024 Web: www.Cyberc.org IEEE TCCC: https://cs-tccc.org/ Publication: IEEE (EI & IEEE Xplore) Paper Submission: Send the manuscript to Papers@cyberc.org Paper Publication Date: 10/24/2024 2024 Theme: Revolutionizing Computing and Communication in the AI Era Organizer: Hong Kong University of Science and Technology - Guangzhou Co-hosted by: IEEE TCCC (Sponsor), IEEE Computer Society (Sponsor), University of Louisville, Nanjing University of Posts & Telecommunications, Zhengzhou University, Guangzhou University, and Xi’an Jiaotong-Liverpool University Financially Sponsored by: Huawei, ZTE, InfoBeyond, Hong Kong Univ. of Sci. and Tech. (Guangzhou) Programs: CyberC 2024 includes Emerging Technology Summit, Keynotes, Panel Discussions, Tutorials, PhD workshops, AI & Big Data Competition, Best Paper awards, Competition Prizes, and Ceremony. Scopes: CyberC promotes the research areas covered by the following tracks: Track 1: AI, Machine Learning, Deep Learning, Autonomy, and Intelligence • AI & machine learning theory, architecture, and system • Soft computing, neural network, convolutional neural network, and deep learning • Intelligence computing, inductive learning, reasoning • Ensemble and evolutionary computation • Large scale natural language processing • Data analytics, social media, and web mining • Fuzzy set theory, fuzzy controls and systems • Feature engineering, feature learning, and feature fusion • Web computing, intelligent and knowledge based systems • Distributed and parallel systems & algorithms • Database and data mining and analytics • Pattern recognition and multimedia • Data streaming and storage, and data analytics • AI boundary and ethnicity challenges Track 2: Mobile Computing, Communications, 5G and Beyond • Spectrum sensing, fusion, decision-making and allocation • Signaling process, PHY/link layer protocols and optimization • Resource optimization, network, and distributed network computing • Dynamic spectrum access, spectrum sharing, spectrum management • AI/ML for cognitive radio network • VNF/SDN (NFV, VIM, VNFs, service function chaining, network slicing, and Open Flow) • Quantum communications, and network computing resources • Quantum Computing in Disrupting the Moore’s Law • Application of Quantum Computing in Cyber Security • Quantum Computing in Large Scale AI. • Sensor networks, mesh networks, MIMO and 6G • Edge computing, IoT connectivity, and energy harvesting • LEO (Low Earth Orbit) satellite/HAPS (High Altitude Platform System) Communication & its scale and applications • LEOS/HAPS communication integration with terrestrial mobile networks • LEOS/HAPS communication network neliability • Industrial IoT, e.g., manufacturing, logistics, and supply chain • Industry control network, networking theory and algorithms • Wireless embedded sensor systems, body sensor, smart cities & security • Cognitive radio and Soft defined radio • Future generation communications and pervasive computing • Peer-to-peer network computing and overlaying networks • Directional antenna and networking • FDMA/OFDMA modulations, synchronization, and power optimization • Security & privacy, attacking models, confidentiality & security in communications • Services, middleware, and multimedia on wireless networks • QoS, reliability, performance, and communication theory • Wireless network simulations, implementation, and applications Track 3: Cloud computing, information system, and distributed computing • Parallel and distributed algorithms, resource allocation, and load-balance • Public and private cloud, mobile cloud, mobility-aware cloud data/streams • SOA, web services, and mobile services (software, infrastructure) • Cloud resource management and allocation • Cloud utility models and service pricing • New parallel/concurrent programming models for cloud computing • Scientific computation and other applications in the cloud • Mobility modeling, management and measurement for mobile clouds • Mobile multimedia content delivery, transferring, and migration • Content delivery networks using storage clouds • User experience and cyber security • Performance evaluation, measurement and optimization • Communications and network security • Information security, software security, system security, or cryptography • Cloud tools, test-bed, simulations, and experimental environments • Collaborative and cooperative environments • Cloud QoS, autonomic, reliability, and fault-tolerance • Web services and internet computing • Web-caching, content delivery systems and data distribution systems • Distributed applications, modeling language, and software engineering • Pervasive/ubiquitous computing and intelligence • Hyper performance of cloud computing & latency challenges • ETE large scale cloud computing reliability Track 4: Computer Vision and Image Processing • AI for computer vision and image processing • NLP, image, vision learning, and deep learning • Texture image representation and classification • Image filtering and enhancement • Image segmentation • Object detection and recognition • Tracking and motion analysis • Image synthesis, 3D reconstruction and modeling • Stereo vision and depth estimation • Face recognition and biometrics • Scene understanding and semantic segmentation • Image and video compression • Image and video restoration and super-resolution • Optical character recognition • Medical image analysis and processing • Document analysis and recognition • Video analysis and summarization • Augmented reality and virtual reality • Color, multispectral, and hyperspectral imaging • Medical image computing • Sensing, representation, modeling, and registration • Stereoscopic, multiview, and 3D processing • Biometrics, forensics, and security Track 5: NLP, knowledge discovery, computational semantics • NLP, lexical semantics, compositional semantics • Semantic parsing, textual inference, entailment • Question answering, event learning, causal and temporal relations, • Knowledge mining and acquisition • Text & data streaming, scalable computing, task deployments • Information extraction, retrieval, and learning • Multilingual and cross-lingual semantics • Word sense disambiguation and induction • Formal approaches to semantics • Semantics in NLP applications and higher level NLP applications • Text and speech processing • Morphological analysis, syntactic analysis, lexical semantics, and discourse • High performance computing, and intensive data networks • Discourse, pragmatics, and dialogue • Social media and social network analytics • NLP computing security and information assurance • Graph learning, mining, and opinion mining • Cloud and high performance computing for big data Track 6: Privacy, Security, and Cybersecurity • Privacy enhancing, policy, access control, and regulation • Privacy with surveillance, big data, machine learning, and IoT • Privacy for healthcare, human-computer interaction, and other applications • Network security, cybersecurity risk assessment, malware analysis • Cryptography, cryptographic algorithm, post-quantum cryptography • Attacks, DDoS, ransomware, and cybersecurity attacks and detection • Cyber network, configuration, cloud, IoT, and wireless communications • Multistage attacks, data security, AI and intrusion detection • Risk assessment, management, and network monitoring • Blockchain, cryptocurrency, smart contracts, identity management, and voting • Blockchain applications, e.g., smart grid, healthcare, industrial control systems • Cyber authentication and access control • Deep learning for attack behavior, prediction, and game theory • AI/ML and deep learning for security and privacy • Cybersafety and privacy, standardization, compliance and forensics Track 7: Metaverse architecture, intelligence, and applications • Metaverse architectures and metaverse computing • Edge/fog/cloud computing and distributed network systems for metaverse • Augmented reality, mixed reality, and virtual reality for Metaverse • Metaverse content creation, distribution, and management • Future communications and networking for metaverse • Intelligent metaverse technologies & applications • AI, machine learning, deep learning, and NLP for metaverse • Metaverse data privacy and security in AI-driven applications • Metaverse for conference, education, entertainment, marketing, and other applications • Blockchain technologies to support metaverse ownership and security • Digital-twins and metaverse INFORMATION FOR AUTHORS The CyberC 2024 Proceedings will be published by IEEE CPS. Full papers for CyberC 2024 must not exceed 10 pages of IEEE 2-column format, while short papers must not exceed 4 pages. Please visit the conference web site at http://www.cyberc.org for precise formatting and submission instructions. IMPORTANT DATES Submission deadline: 08/20/2024 Notification of acceptance: 09/10/2024 Registration due date: 09/20/2024 Conference date: 10/24/2024-10/26/2024 STEERING COMMITTEE Anup Kumar (Chair), University of Louisville, USA Suryadip Chakraborty, Johnson C. Smith Univ., USA Chi-Ming Chen, AT&T Labs, USA Chih-Lin I, China Mobile, China Yang Yang, ShanghaiTech, China Jiangzhou Wang, University of Kent, UK Tzyh-Jong (TJ) Wang, AT&T Labs, USA Contact us at email: papers@cyberc.org |
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