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Predictive 5G Uplink Slicing for Blockchain-driven Smart Energy Contracts.

, , , and . ICC Workshops, page 19-24. IEEE, (2022)

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Control Plane Fault Tolerance for Resilient Software-Defined Networking based Critical Infrastructure Communications., , , and . 5G World Forum, page 10-13. IEEE, (2018)Providing Response Times Guarantees for Mixed-Criticality Network Slicing in 5G., , , , and . DATE, page 552-555. IEEE, (2022)Towards Open 6G: Experimental O-RAN Framework for Predictive Uplink Slicing., , , , and . ICC, page 4834-4839. IEEE, (2023)SAMUS: Slice-Aware Machine Learning-based Ultra-Reliable Scheduling., , and . ICC, page 1-6. IEEE, (2021)Proactive Resource Management for Predictive 5G Uplink Slicing., , , and . GLOBECOM, page 1000-1005. IEEE, (2022)Design of a 5G Network Slicing Architecture for Mixed-Critical Services in Cellular Energy Systems., , , and . SmartGridComm, page 90-95. IEEE, (2022)Machine Learning-Enabled 5G Network Slicing., , , and . Mach. Learn. under Resour. Constraints Vol. 3 (3), De Gruyter, (2022)Predictive 5G Uplink Slicing for Blockchain-driven Smart Energy Contracts., , , and . ICC Workshops, page 19-24. IEEE, (2022)Context-based Latency Guarantees Considering Channel Degradation in 5G Network Slicing., , , , and . RTSS, page 253-265. IEEE, (2022)