Decentralized and overall condition monitoring system for large-scale mobile and complex equipment

被引:0
|
作者
Cao Jianjun [1 ]
Zhang Peilin [1 ,2 ]
Ren Guoquan [1 ]
Fu Jianping [1 ]
机构
[1] Mech Engn Coll, Dept Artillery Engn, Shijiazhuang 050003, Peoples R China
[2] Nanjing Univ Sci & Technol, Coll Mech Engn, Nanjing 210094, Peoples R China
关键词
condition monitoring; fault diagnosis; micro control unit; information fusion;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
It is an urgent project to realize online and overall condition monitoring and timely fault diagnosis for large-scale mobile and complex equipment. Moreover, most of the existing large-scale complex equipment has quite insufficient accessibility of examination, although it still has quite a long service life. The decentralized and overall condition monitoring, as a new concept, is proposed from the point of view of the whole system. A set of complex equipment is divided into several parts in terms of concrete equipment. Every part is processed via one detecting unit, and the main detecting unit is connected with other units. The management work and communications with the remote monitoring center have been taken on by it. Consequently, the difficulty of realizing a condition monitoring system and the complexity of processing information is reduced greatly. Furthermore, excellent maintainability of the condition monitoring system is obtained because of the modularization design. Through an application example, the design and realization of the decentralized and overall condition monitoring system is introduced specifically. Some advanced technologies, such as, micro control unit (MCU), advanced RISC machines (ARM), and control area network (CAN), have been adopted in the system. The system's applicability for the existing large-scale mobile and complex equipment is tested.
引用
收藏
页码:758 / 763
页数:6
相关论文
共 50 条
  • [31] Decentralized Large-Scale Power Balancing
    Halvgaard, Rasmus
    Jorgensen, John B.
    Poulsen, Niels K.
    Madsen, Henrik
    Vandenberghe, Lieven
    2013 4TH IEEE/PES INNOVATIVE SMART GRID TECHNOLOGIES EUROPE (ISGT EUROPE), 2013,
  • [32] Configuration for complex large-scale system equipments
    College of Mechanical Engineering and Applied Electronics Technology, Beijing University of Technology, Beijing 100022, China
    不详
    Beijing Gongye Daxue Xuebao J. Beijing Univ. Technol., 2008, 4 (347-352): : 347 - 352
  • [33] Robotic mobile and mirror milling of large-scale complex structures
    Xie, Zenghui
    Xie, Fugui
    Zhu, Limin
    Liu, Xin-Jun
    NATIONAL SCIENCE REVIEW, 2023, 10 (05)
  • [34] Robotic mobile and mirror milling of large-scale complex structures
    Zenghui Xie
    Fugui Xie
    Limin Zhu
    Xin-Jun Liu
    National Science Review, 2023, 10 (05) : 10 - 13
  • [35] The establishment of the assessment system of large-scale medical equipment allocation
    Lu, Xiaoqing
    Tian, Ruyu
    Cui, Ying
    Journal of Chemical and Pharmaceutical Research, 2013, 5 (11) : 549 - 555
  • [36] The Verification and Validation of a Large-Scale System: Equipment TaaS as an Example
    Hu, Jhen-Jia
    2014 INTERNATIONAL SYMPOSIUM ON COMPUTER, CONSUMER AND CONTROL (IS3C 2014), 2014, : 13 - 18
  • [37] Research of Personnel Operational Ability Evaluation of Large-scale Complex Equipment
    JIANG Weiyang
    HE Xiaoliang
    ZHAO Manyun
    InternationalJournalofPlantEngineeringandManagement, 2019, 24 (03) : 129 - 139
  • [38] Dynamic suppliers' risk management of large-scale and complex equipment development
    Yuan, Wenfeng
    Liu, Sifeng
    Yuan, Chaoqing
    KYBERNETES, 2012, 41 (7-8) : 839 - 850
  • [39] Decentralized Disturbance Rejection Control for Large-Scale Interconnected Power System
    Wang, Wei
    Ohmori, Hiromitsu
    2016 IEEE CONFERENCE ON CONTROL APPLICATIONS (CCA), 2016,
  • [40] Decentralized cooperative H∞ robust control for linear large-scale system
    Tong, Xiyue
    Li, Dongxu
    2006 9TH INTERNATIONAL CONFERENCE ON CONTROL, AUTOMATION, ROBOTICS AND VISION, VOLS 1- 5, 2006, : 164 - +