Task Scheduling Strategy for Industrial Control Network based on Cloud-Edge-End Fusion Framework

Author:

Liang Lei,Lu Jun,Tang Ran,Peng Jiakai,Zhang Wei,Zhao Min

Abstract

Abstract Industrial tasks with traditional cloud architecture have many disadvantages, which are mainly longer delay of data transmission and difficulty in software deployment. In view of the above disadvantages, this paper used containers to solve the problems for industrial software deployment and upgrade. This paper uses a cloud-edge-end framework to deploy tasks with high delay on the edge of the network or even on the device side, so as to reduce the delay of data transmission and computing pressure. At the same time, the task scheduling strategy based on the particle swarm optimization algorithm is used to search for the node with the minimum task delay among multiple nodes to realize the task allocation optimization. Finally, through the comparison experiment, it is concluded that the task scheduling strategy for industrial control networks based on a cloud-edge-end fusion framework can better reduce the task execution delay and reduce the difficulty of software deployment.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference10 articles.

1. Current situation analysis of Edge Computing Open-source Platform;Liang;Zte Communications Technology,2019

2. Research and implementation of containerized platform architecture for industrial Internet edge Computing;Wang,2021

3. Containerization promotes the quality leap screen of industrial automation software;Peng;Shanghai Industrial Automation Instrument Research Institute,2020

4. Edge computing devices for power Internet of things based on containerization;Peng;New industrialization,2020

5. User-side data application framework of power Internet of things based on cloud edge-end collaboration;Lu;Electric Power Construction,2020

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Cloud-Edge-End Collaboration for the Finishing Rolling System: An Accelerated Data-driven Cooperative Distributed Predictive Control Approach;2024 IEEE 13th Data Driven Control and Learning Systems Conference (DDCLS);2024-05-17

2. Overview of Research on Cloud-Edge-End Collaboration Technology of Industrial Control System;Proceedings of the 2023 International Conference on Electronics, Computers and Communication Technology;2023-11-17

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