航空学报 > 2008, Vol. 29 Issue (1): 197-203

基于专家系统的导弹发射车液压系统故障诊断

周汝胜1,焦宗夏1,王少萍1,赵延2   

  1. 1北京航空航天大学 自动化科学与电气工程学院 2第二炮兵装备研究院 第三研究所
  • 收稿日期:2007-01-16 修回日期:2007-04-18 出版日期:2008-01-15 发布日期:2008-01-15
  • 通讯作者: 周汝胜1

Fault Diagnosis Expert System for Hydraulic System of Missile Launcher

Zhou Rusheng1,Jiao Zongxia1,Wang Shaoping1,Zhao Yan2   

  1. 1School of Automation Science and Electrical Engineering, Beijing University of Aeronautics and Astronautics  2The Third Research Institute, Equipment Research Institute of PLA’s Second Artillery
  • Received:2007-01-16 Revised:2007-04-18 Online:2008-01-15 Published:2008-01-15
  • Contact: Zhou Rusheng1

摘要:

液压系统为导弹发射车提供动力源,该系统运行的可靠性在不同程度上影响着导弹发射车的工作性能。针对导弹发射车液压系统故障知识的特点,提出了将领域专家经验分解成故障现象、故障原因和故障规则的知识表达方式,设计了由故障现象、故障原因分别构成故障规则前件和后件的知识获取方法,实现了故障知识的有效管理和维护。针对故障诊断流程图的结构特点,提出了故障诊断二叉树的概念,给出了将诊断流程图转化成故障诊断二叉树的方法,并在此基础上设计了基于故障诊断二叉树的故障推理机和基于二叉树前序遍历的故障解释机制。实践表明该专家系统的设计方法及原理具有一定实用性和通用性,对同类系统的设计具有很好的借鉴作用。

关键词: 液压系统, 故障诊断二叉树, 故障推理机, 专家系统

Abstract:

The hydraulic system is a power source of a missile launcher, and its reliability decides the working performance of the launcher. Based on the characteristics of the knowledge of the hydraulic system’s failures, a new way to express the expert’s knowledge in this field which is to divide the knowledge into failure phenomena, failure causes and failure rules is put forward. A method to acquire knowledge of failures is also designed. In this method, the before and after components of a failure rule are constituted respectively by failure phenomena and causes, and the effective organization and maintenance of the failure-knowledge’s databases are actualized. As for the structure of the fault-diagnosis flow chart, a new concept, which converts the flow chart to a fault-diagnosis binary tree, is presented. According to this idea, the fault inference engine and the interpretation machine with preorder traversal algorithm of the binary tree are achieved. The results show that these methods and principles to design the expert system have practicability and universality, and can be used as references for designing other expert systems.

Key words: hydraulic , system,  , fault-diagnosis , binary , tree,  , fault , inference , engine,  , expert , system

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