Author of the publication

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

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

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed. You can also use the button next to the name to display some publications already assigned to the person.

 

Other publications of authors with the same name

Enabling hard service guarantees in Software-Defined Smart Grid infrastructures., , and . Comput. Networks, (2018)Advanced controller resiliency in software-defined networking enabled critical infrastructure communications., and . ICTC, page 673-678. IEEE, (2017)Empirical comparison of virtualized and bare-metal switching for SDN-based 5G communication in critical infrastructures., , and . NetSoft, page 453-458. IEEE, (2016)Predictive 5G Uplink Slicing for Blockchain-driven Smart Energy Contracts., , , and . ICC Workshops, page 19-24. IEEE, (2022)Machine Learning-Enabled 5G Network Slicing., , , and . Mach. Learn. under Resour. Constraints Vol. 3 (3), De Gruyter, (2022)Towards Resilient 5G: Lessons Learned from Experimental Evaluations of LTE Uplink Jamming., , , and . ICC Workshops, page 1-6. IEEE, (2019)Network Slicing for Critical Communications in Shared 5G Infrastructures - An Empirical Evaluation., , , and . NetSoft, page 393-399. 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)Evaluating Software-Defined Networking-Driven Edge Clouds for 5G Critical Communications., , , and . ICTC, page 405-410. IEEE, (2018)