MSS: Exploiting Mapping Score for CQF Start Time Planning in Time-Sensitive Networking

偏移量(计算机科学) 调度(生产过程) 计算机科学 流水车间调度 作业车间调度 算法 实时计算 动态优先级调度 并行计算 运筹学 数学优化 数学 服务质量 计算机网络 布线(电子设计自动化) 程序设计语言
作者
Miao Guo,Chaojie Gu,Shibo He,Zhiguo Shi,Jiming Chen
出处
期刊:IEEE Transactions on Industrial Informatics [Institute of Electrical and Electronics Engineers]
卷期号:19 (2): 2140-2150 被引量:8
标识
DOI:10.1109/tii.2022.3206815
摘要

Time-sensitive networking (TSN), an emerging network technology, requires high-performance scheduling mechanisms to deliver deterministic service in Industry 5.0. Cyclic queuing and forwarding (CQF) is launched to simplify the configuration complexity of the early stage mechanism time-aware shaper in TSN flow scheduling. Previous CQF studies adopt an inflexible incremental flow scheduling scheme, which consists of flow sorting, offset search, and resource judgment. However, we observe that flow sorting and offset search are mutually interdependent. The offset of a flow helps determine the resource status on the flow path, which can guide flow sorting. By utilizing the interaction between flow and offset, we design a novel scheduling approach that achieves high scheduling performance and time efficiency. Specifically, the proposed approach combines flow sorting and offset search together to select flow and its offset (i.e., ( flow, offset )) simultaneously. To effectively determine the selecting priority and select the potential optimal flow-offset combination, we define a unified metric, $mapping\,score$ , to quantify the schedulability of different flow and offset combinations. The extensive experiments demonstrate that the scheduling success rate of our proposed approach is on average 31.69% higher than the baseline and 4.57% higher than the state-of-the-art flow judgement approach (FLJ) method. Moreover, it outperforms the state-of-art FLJ method by 7.62% in large-scale linear topologies, indicating its great scalability in different network scales and complex topologies.
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