most citedLatency-Sensitive 5G RAN Slicing for Industry 4.0

66 citations · 151 across the 7 of their papers we have counts for

collaborators

7 papers

cs.NI202666 cited

Latency-Sensitive 5G RAN Slicing for Industry 4.0

Jan García-Morales, M. Carmen Lucas-Estañ, Javier Gozalvez

Network slicing is a novel 5G paradigm that exploits the virtualization and softwarization of networks to create different logical network instances over a common network infrastru…

cs.NI20269 cited

Common Radio Resource Management Policy for Multimedia Traffic in Beyond 3G Heterogeneous Wireless Systems

M. Carmen Lucas-Estañ, Javier Gozalvez, Joaquin Sanchez-Soriano

Beyond 3G wireless systems will be composed of a variety of Radio Access Technologies (RATs) with different, but also complementary, performance and technical characteristics. To e…

cs.NI202624 cited

5G Configured Grant Scheduling for 5G-TSN Integration for the Support of Industry 4.0

Ana Larrañaga, M. Carmen Lucas-Estañ, Imanol Martinez +1

Factories are evolving towards digitalized data-based ecosystems under the paradigm of the Industry 4.0 where new industrial services allow the implementation of more robust, resil…

cs.NI20269 cited

Support of Teleoperated Driving with 5G Networks

M. Carmen Lucas-Estañ, Baldomero Coll-Perales, Mohammad Irfan Khan +4

Teleoperated driving (ToD) can support autonomous driving under complex or unexpected traffic scenarios that an autonomous vehicle may not understand or be able to handle. In ToD,…

cs.NI20268 cited

Configured Grant Scheduling for the Support of TSN Traffic in 5G and Beyond Industrial Networks

M. Carmen Lucas-Estañ, Ana Larrañaga, Javier Gozalvez +1

5G and beyond networks can facilitate the digital transformation of manufacturing and support more flexible and reconfigurable factories with ubiquitous mobile connectivity. This r…

cs.NI202613 cited

Direct-V2X Support with 5G Network-based Communications: Performance, Challenges and Solutions

M. C. Lucas-Estañ, B. Coll-Perales, T. Shimizu +5

This study analyzes the feasibility of supporting critical V2X services using 5G network-based Vehicle-to-Network-to-Vehicle (V2N2V) communications. The study evaluates the end-to-…