Chinese Journal of Ship Research, Volume. 19, Issue 2, 207(2024)
Edge computing-based distributed control architecture for large-scale active vibration isolation system in ships
[6] [6] ZHANG S, HE C, MIAO Z. Intelligent fault diagnosis system based on vibration signal edge computing[C]Proceedings of 2020 Global Reliability Prognostics Health Management Conference. Shanghai, China: IEEE, 2020.
[8] QIU T, CHI J C, ZHOU X B et al. Edge computing in industrial internet of things: architecture, advances and challenges[J]. IEEE Communications Surveys & Tutorials, 22, 2462-2488(2020).
[11] [11] CAO K Y, LIU Y F, MENG G J, et al. An overview on edge computing research[J]. IEEE Access. 2020, 8: 85714 − 85728.
[12] [12] LI J W, SU J H, SHI Y, et al. Microgrid secondary frequency control method based on life optimization of energy stage units[C]Proceedings of 2014 International Power Electronics Application Conference Exposition (PEAC). Shanghai, China: IEEE, 2014.
[15] [15] XIONG Y, SUN Y L, XING L, et al. Extend cloud to edge with KubeEdge[C]2018 IEEEACM Symposium on Edge Computing (SEC). Seattle, WA, USA: IEEE, 2018.
[17] [17] ABDOLLAHI VAYGHAN L, SAIED M A, TOEROE M, et al. Deploying microservice based applications with Kuberes: experiments lessons learned[C]Proceedings of the 11th International Conference on Cloud Computing (CLOUD). San Francisco, CA,USA: IEEE, 2018.
Get Citation
Copy Citation Text
Wan XU, Shitao ZHANG, Ruidong XIA, Song LIU. Edge computing-based distributed control architecture for large-scale active vibration isolation system in ships[J]. Chinese Journal of Ship Research, 2024, 19(2): 207
Category: Marine Machinery, Electrical Equipment and Automation
Received: Dec. 27, 2022
Accepted: --
Published Online: Mar. 18, 2025
The Author Email: