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飞机总装的现场级工业网络系统:架构、关键技术及应用

关新平 温晓婧 金天恺 王淑玲 陈彩莲

自动化学报2025,Vol.51Issue(10):2147-2162,16.
自动化学报2025,Vol.51Issue(10):2147-2162,16.DOI:10.16383/j.aas.c250157

飞机总装的现场级工业网络系统:架构、关键技术及应用

Field-level Industrial Network Systems for Aircraft Final Assembly:Architecture,Key Technologies,and Applications

关新平 1温晓婧 1金天恺 1王淑玲 1陈彩莲1

作者信息

  • 1. 上海交通大学自动化系 上海 200240||系统控制与信息处理教育部重点实验室 上海 200240||上海市工业网络系统感知与控制重点实验室 上海 200240
  • 折叠

摘要

Abstract

To address the urgent demand for high-precision and time-sensitive collaboration in complex system as-sembly,aircraft final assembly manufacturing calls for the development of field-level industrial network systems with integrated sensing,transmission,and control capabilities.This paper takes the lead in establishing a net-worked control system capacity model specifically designed for field-level industrial networks,and proposes a novel industrial internet architecture featuring bidirectional fusion and coordinated control.Focusing on the full-task closed-loop chain of sensing,transmission,computation,and control,a comprehensive multi-dimensional timeliness evaluation index system is constructed,and cross-domain heterogeneous resource joint scheduling and optimization mechanisms are systematically explored.Finally,focusing on dynamic measurement of active surfaces and multi-process collaborative optimization in aircraft final assembly,a high-fidelity digital twin validation platform is de-signed and implemented to effectively support the closed-loop mapping among theoretical models,control strategies,and practical deployment.

关键词

现场级工业网络系统/感知-传输-控制一体化/系统容量/综合指标/联合设计

Key words

Field-level industrial network systems/sensing-transmission-control integration/system capacity/com-prehensive metrics/co-design

引用本文复制引用

关新平,温晓婧,金天恺,王淑玲,陈彩莲..飞机总装的现场级工业网络系统:架构、关键技术及应用[J].自动化学报,2025,51(10):2147-2162,16.

基金项目

国家自然科学基金(62025305,62432009,92167205,62503327)资助Supported by National Natural Science Foundation of China(62025305,62432009,92167205,62503327) (62025305,62432009,92167205,62503327)

自动化学报

OA北大核心

0254-4156

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