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装备系统故障自愈原理研究 被引量:47

Research on the Fault Self-recovery Principle of Equipment System
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摘要 装备故障可否在其运行中得到控制或自行消除?故障能否像人和动物的疾病一样可以“自愈”?在系统科学的指导下,移植现代医学“自主调理”治疗原理,包括免疫、防御、代偿、自修复和适应等,可以用来指导研究装备自愈原理及工程应用;重点研究了以故障预防和消除为目标的装备系统自愈调控原理,为研制出具有自愈功能的新一代装备提供科学依据。 Can mechanical faults be controlled and eliminated at machine's run-time? Can a machine heal itself, as a living person or animal? What can be done before shutting down and overhauling a machine? Under the guidance of the systemics theory,borrowing the idea of “self-recuperation' therapeutic methdology in modern medicinal science, e.g., the knowledge about the mechanisms of immunity, protection, compensation, regeneration, adaptation, etc., with the fault prevention and self-healing as the goal, this paper focuses on the study of the fault self-recovery principle and its engineering application, i.e. Fault Self-recovery Engineering (FSE), which can provide theoretical basis in developing a new generation of self-healing machine.
作者 高金吉
出处 《中国工程科学》 2005年第5期43-48,共6页 Strategic Study of CAE
基金 国家自然科学基金资助项目(50375014) 教育部科学技术研究重点项目(重点03024)
关键词 装备系统 故障自愈原理 故障自愈调控 诊断 主动控制 equipment system principle of fault self-recovery fault self-recovery regulation diagnosis active control
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参考文献13

  • 1徐滨士,张伟,刘世参,马世宁,许一.现代装备智能自修复技术[J].中国表面工程,2004,17(1):1-4. 被引量:45
  • 2祝世讷.中西医学差异与交融[M].北京:人民卫生出版社,2001.183-185.
  • 3恩格尔.需要新的医学模型,对生物医学的挑战.医学与哲学,1980,1(3):88-88.
  • 4钱学森.建立系统学[M].太原:山西人民出版社,2001..
  • 5沈禄庚.系统科学概要[M].北京:北京广播学院出版社,2000..
  • 6汪希萱 顾超华.旋转机械故障的在线消除[C]..浙江大学化工机械研究所论文集[C].,..
  • 7Gao Jinji. A study of the fault self-recovering regulation for process equipment [ A]. proceedings of IMS2003, Xi'an China, 2003.
  • 8Shiyu Zhou, Jianjun Shi. Active balancing and vibration control of rotating machinery: a survey [ J ].The Shock and Vibration Digest. 2001, 33 (4): 361~371.
  • 9Wang Wilson Quansheng, Rotary machinery health condition monitoring, fault diagnosis and prognosis [D]. University of Waterloo (Canada), 2002.
  • 10Yuen Kaveng. Model selection, identification and robust control for dynamical systems [ D], California Institute of Technology, 2002.

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