Formal Timing Analysis of CQF Interference in TSN: A Network Calculus-Based Approach
Luxi Zhao, Lei Rao, Qiao Li, Rubi Debnath
摘要
Cyclic Queuing and Forwarding (CQF) is an increasingly adopted mechanism in Time-Sensitive Networking (TSN) for bounding end-to-end delays through fixed-length cycles with alternating transmission queues. While timing guarantees for CQF flows are well established under both time-triggered (TT) and event-triggered (ET) implementations, the worst-case interference that CQF may impose on other traffic classes in mixed-criticality TSN networks remains an open problem. This challenge is exacerbated by the structured, non-work-conserving behavior of CQF and the complexity of its interaction with heterogeneous TSN scheduling mechanisms such as TAS, CBS, and SP. This paper presents the first formal framework for quantifying the worst-case interference caused by CQF on other schedulers under both TT- and ET-based implementations. We propose a network-calculus-based CQF real-time interface abstraction that models the residual service available to coexisting traffic. We formally derive closed-form upper bounds on CQF-induced interference, explicitly capturing bidirectional interactions between CQF and both higher- and lower-priority traffic classes. These bounds can be modularly and seamlessly integrated into existing schedulability analyses, enabling scalable and compositional timing verification in hybrid TSN architectures. Extensive evaluations on synthetic benchmarks and realistic TSN configurations demonstrate the analytical effectiveness, scalability, and practical applicability of the proposed framework in certifying end-to-end guarantees in mixed-criticality TSN systems.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
相关 Paper
- Injection Time Planning: Making CQF Practical in Time-Sensitive NetworkingJinli Yan, Wei Quan, Xuyan Jiang, Zhigang SunINFOCOM 2020 · 被引用 187 次
- Lyapunov-Based Stability and Delay Bounds for IEEE 802.1Qbv in Imperfectly Synchronized TSNZhuangye Luo, Feng Zeng, Xi ChenRTSS 2025 · 被引用 1 次
- Optimizing Quantum Assignment for DRR in TSN: A Network Calculus-Based MethodAnlan Xie, Feng He, Luxi ZhaoRTSS 2024 · 被引用 2 次
- An Improved Worst-Case Response Time Analysis for AVB Traffic in Time-Sensitive NetworksDaniel Bujosa, Julián Proenza, Alessandro V. Papadopoulos, Thomas Nolte 等RTSS 2024 · 被引用 4 次
- InNetScheduler: In-network scheduling for time- and event-triggered critical traffic in TSNXiangwen Zhuge, Xinjun Cai, Xiaowu He, Zeyu Wang 等INFOCOM 2024 · 被引用 21 次
