Poster: Potentials of mixing TSN wired networks and best-effort wireless networks for V2X

I Turcanu, C Sommer - 2021 IEEE Vehicular Networking …, 2021 - ieeexplore.ieee.org
2021 IEEE Vehicular Networking Conference (VNC), 2021ieeexplore.ieee.org
Cooperative Connected and Automated Vehicles (CAVs) require multiple disjunct In-Vehicle
Networks (IVNs) to interact via wireless networks, making communication across vehicles
prone to unnecessary queuing delays. Earlier studies have focused on updating wireless
networks to integrate with IVNs, which would require substantial changes to the core and
access network. In this work, we motivate an approach that moves complexity to the network
edge, examining the potentials of mixing Time Sensitive Networking (TSN) wired networks …
Cooperative Connected and Automated Vehicles (CAVs) require multiple disjunct In-Vehicle Networks (IVNs) to interact via wireless networks, making communication across vehicles prone to unnecessary queuing delays. Earlier studies have focused on updating wireless networks to integrate with IVNs, which would require substantial changes to the core and access network. In this work, we motivate an approach that moves complexity to the network edge, examining the potentials of mixing Time Sensitive Networking (TSN) wired networks and unmodified, best-effort wireless networks for Vehicle to Everything (V2X). Guided by a platooning use case, we present results from a simple proof-of-concept system simulation demonstrating the potentials of such an approach as well as the feasibility of performance evaluation in openly available simulation frameworks.
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