A Systematic Flexible-Window-Based Scheduling Framework for Time-Sensitive Networking

Wenjing Sun, Yuan Zou, Nan Guan*, Xudong Zhang*, Jiahui Liu, Morteza Hashemi Farzaneh

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

2 引用 (Scopus)

摘要

Time-sensitive networking (TSN) is increasingly applied in automotive and industrial Internet fields due to its low latency and deterministic communication. Gate control list (GCL) is foundational for deploying TSN. Currently, most scheduling research focuses on frame-to-window-based scheduling. This scheduling approach typically generates a specific window for each frame, leading to a proliferation of GCL in large networks, which increases the complexity of implementing TSN. To simplify deployment and enhance scheduling reliability, this article introduces a systematic flexible-window-based scheduling framework. Utilizing a gapless GCL design approach, it optimizes flow’s worst-case end-to-end (e2e) delays through window length design, with delays obtained through network calculus analysis. A generic solving framework based on metaheuristic algorithms is established to address this optimization problem. The scheduling framework also features a load-balanced turn prohibition routing strategy to balance link loads and avoid cyclic dependencies, alongside a K-means priority clustering method based on routing overlap to reduce the number of priorities. Simulation validation in a high-level autonomous driving vehicle’s in-vehicle network shows that the proposed method can decrease GCL numbers by nearly 90% against frame-to-window scheduling. In common industrial Internet scenario, it significantly reduces worst-case e2e delays and enhances scheduling success rates compared to the analogous scheduling method. Large-scale complex network scenario further demonstrates its scalability.

源语言英语
页(从-至)15636-15649
页数14
期刊IEEE Internet of Things Journal
12
11
DOI
出版状态已出版 - 2025
已对外发布

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