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Conference Open access 2026

DSP Hardware Architecture Design for Low-Latency and Ultra-Reliable Communication

A review of the DSP hardware architecture for URLLC scenarios and the collaboration of AI with DSP, terahertz processing, and 6G extreme URLLC architecture is envisioned, providing systematic technical references for researchers.

Hao-Zhe Huang · 0 citations
Review Aug 2026

Digital Twin Networks for 6G Wireless Systems: Architecture, Enabling Technologies, Intelligent Control, and Open Challenges

This survey formally categorizes state-of-the-art DTN architectures into passive monitoring twins and active control twins, and provides an in-depth evaluation of their underlying enabling technologies, specifically ray-tracing, reconfigurable intelligent surfaces, artificial intelligence, and mobile edge computing.

Charalampos Oikonomidis, Emmanouel T. Michailidis, N. Miridakis · 0 citations
Open access 2026

A Digital Twin-Enabled Management Framework for Low-Latency and Low-Jitter Wireless TSN

Time-Sensitive Networking (TSN) provides guaranteed traffic delivery, making it essential for industrial automation, multimedia, automotive systems, and other areas. Although TSN is well-established in wired networks, wireless systems face extra challenges such as delays, interference, and unstable links. Extending TSN...

Pablo Avila-Campos, J. Haxhibeqiri, Xianjun Jiao et al. · 0 citations
Open access Aug 2026

NEXT-GENERATION NETWORK MANAGEMENT IN INDIA: AN AI-DRIVEN FRAMEWORK INTEGRATING 5G, SDN, AND EDGE COMPUTING

An Artificial Intelligence (AI) centric network management framework that combines 5G radio access and core capabilities, Software-Defined Networking (SDN) for centralized and programmable control and Multi-access Edge Computing (MEC) for localized and low latency processing is introduced.

Praveen Kumar, S. Hashmi, Preeti Singhwal et al. · 0 citations
Review Sep 2026

AI-Powered 6G: Technologies, Applications, and Challenges for Intelligent Connectivity

Overall, AI-native design makes 6G not just faster than 5G but autonomously adaptive and resilient, marking a paradigm shift toward networks that are inherently intelligent, sustainable, and capable of supporting future real-time digital ecosystems.

Jobin Thomas, Riya Sanjesh, V. V et al. · 0 citations
Review Open access Aug 2026

AI-Enabled Fault Prediction and Performance Optimization in 5G Optical Transport Networks

A practical AI-enabled operating framework to convert streaming measurements to failure probability, time-to-impact, root-cause ranking, optimization recommendations and governed automation actions is proposed.

M. Imran · 0 citations

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