Boulahdour, A., Bagaa, M., Ahmed Ouameur, M., Bekkouche, O., Ksentini, A. et Massicotte, D. (2025). Flow management using advanced queuing and shaping in TSN for future 6G networks. Dans IEEE International Conference on Communications DOI 10.1109/ICC52391.2025.11161903.
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Résumé
The rise of real-time networking demands has driven the IEEE Time-Sensitive Networking (TSN) task group to develop new standards that ensure high bandwidth and lowlatency Ethernet communication. TSN is an essential component of next-generation 6G networks. It offers features that ensure deterministic data transmission and alleviate network congestion. These features are crucial in time-sensitive applications and systems, whereby both precision and reliability are paramount. While early TSN implementations relied heavily on synchronous communication, newer standards, such as IEEE 802.1Qcr, have introduced asynchronous mechanisms via Urgency-Based Scheduler (UBS). UBS employs advanced queuing and traffic shaping strategies, to guarantee minimal delay for real-time applications. Within the scope of 6G, this study evaluates the queuing and shaping strategies applied to multiple flows within the UBS framework. Moreover, we assess their impact on frame transmission rates at the shaper level, highlighting the optimal use case for each strategy
| Type de document: | Document issu d'une conférence ou d'un atelier |
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| Mots-clés libres: | 6G Asynchronous TSN LRQ TBE UBS Computer networks IEEE Standards Intelligent systems Next generation networks Queueing theory Traffic congestion Asynchronous time-sensitive networking Ethernet communications Flow management High bandwidth Low latency LRQ Real- time Task groups Urgency-based scheduler Queueing networks |
| Date de dépôt: | 18 déc. 2025 15:17 |
| Dernière modification: | 18 déc. 2025 15:17 |
| Version du document déposé: | Post-print (version corrigée et acceptée) |
| URI: | https://depot-e.uqtr.ca/id/eprint/12491 |
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