Ergys Puka,
Peter Herrmann
:
Mitigating Dead Spots in Cellular Networks with the Hybrid Communication Protocol CAMFLOOP
Ergys Puka,
Peter Herrmann,
Amirhosein Taherkordi
:
Hybrid Context-aware Message Flooding for Dead Spot Mitigation in V2I Communication
Peter Herrmann,
Ergys Puka,
Tor Rune Skoglund
:
Machine Learning-based Uptime-Prediction for Battery-friendly Passenger Information Displays
Jon Arild Ekberg Meyer,
Ergys Puka,
Peter Herrmann
:
Utilizing Connectivity Maps to Accelerate V2I Communication in Cellular Network Dead Spots
Lecture Notes in Computer Science (LNCS) 2020
ARKIV /
DOI
Ergys Puka,
Peter Herrmann
:
A Data Dissemination Protocol for Vehicles with Temporary Cellular Network Inaccessibility
Ergys Puka,
Peter Herrmann
:
Data Dissemination for Vehicles in Temporary Cellular Network Dead Spots
Ergys Puka,
Peter Herrmann,
Tomas Levin,
Christian Berg Skjetne
:
A way to measure and analyze cellular network connectivity on the norwegian road system
IEEE (Institute of Electrical and Electronics Engineers) 2018
FULLTEKST /
DATA /
DOI
Ergys Puka,
Peter Herrmann
:
Simulating a Context-Aware Message Flooding Protocol to Mitigate Cellular Dead Spots with Realistic Drivers’ Behavior
2021
Ergys Puka,
Peter Herrmann,
Amirhosein Taherkordi
:
Hybrid Context-aware Message Flooding for Dead Spot Mitigation in V2I Communication
2020
Peter Herrmann,
Ergys Puka,
Tor Rune Skoglund
:
Machine Learning-based Uptime-Prediction for Battery-friendly Passenger Information Displays
2020
Ergys Puka,
Peter Herrmann
:
A Data Dissemination Protocol for Vehicles with Temporary Cellular Network Inaccessibility
2019
Jon Arild Ekberg Meyer,
Ergys Puka,
Peter Herrmann
:
Utilizing Connectivity Maps to Accelerate V2I Communication in Cellular Network Deadspots
2019
Ergys Puka,
Peter Herrmann,
Tomas Levin,
Christian Berg Skjetne
:
A Way to Measure and Analyze Cellular Network Connectivity on the Norwegian Road System
2018