A platform for research: civil engineering, architecture and urbanism
Context-adaptive vehicular network optimization
We propose a framework to optimize the communication performance and mobility management in vehicular networks. By having a single unified decision algorithm taking into account both stack-related and external contextual information such as GPS localization or signaling from other nodes, advice can be provided to every layer in the network stack to allow for globally optimized, faster and more accurate adaptation to the current conditions. We present how key example scenarios would benefit from such a system. We describe an instance of this framework using a constraint satisfaction problem (CSP) approach. We also describe our prototype implementation of the network data collection system and give some timing evaluation for a given constraint solver.
Context-adaptive vehicular network optimization
We propose a framework to optimize the communication performance and mobility management in vehicular networks. By having a single unified decision algorithm taking into account both stack-related and external contextual information such as GPS localization or signaling from other nodes, advice can be provided to every layer in the network stack to allow for globally optimized, faster and more accurate adaptation to the current conditions. We present how key example scenarios would benefit from such a system. We describe an instance of this framework using a constraint satisfaction problem (CSP) approach. We also describe our prototype implementation of the network data collection system and give some timing evaluation for a given constraint solver.
Context-adaptive vehicular network optimization
Mehani, Olivier (author) / Boreli, Roksana (author) / Ernst, Thierry (author)
2009-10-01
723305 byte
Conference paper
Electronic Resource
English
Optimization for Pedestrian and Vehicular Delay in a Signal Network
British Library Online Contents | 2005
|Pedestrian-Vehicular - Network Design
Online Contents | 1997
Vehicular network Transmission Technologies
IEEE | 2007
Vehicular Network Systems in Smart Cities
Springer Verlag | 2021
|