基于CLIPS的智能无人飞艇故障诊断专家系统开发
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引用本文:郭忠毅1,龙飞2,樊慧津1?覮,刘磊1,王永骥1.基于CLIPS的智能无人飞艇故障诊断专家系统开发[J].计算技术与自动化,2020,(1):1-7
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郭忠毅1,龙飞2,樊慧津1?覮,刘磊1,王永骥1 (1. 华中科技大学 自动化学院湖北 武汉 4300702. 中国特种飞行器研究所湖北 荆门 448035) 
中文摘要:针对智能无人飞艇的故障诊断问题,设计开发了一套基于CLIPS框架的故障诊断专家系统。首先,根据诊断专家的知识进行故障分类并建立故障树;其次,基于CLIPS工具设计了智能无人飞艇的故障事实库和规则库。然后采用静态链接的方式将CLIPS框架嵌入到C++中,并设计了"路由跳转"功能,实现了用户输入与CLIPS的数据交换接口,并利用MFC框架开发了相应人机交互界面。该智能无人飞艇故障诊断专家系统的开发,改善了现阶段人工故障诊断的不规范及效率低下等问题,为智能无人飞艇的故障诊断、分析和排除提供了平台和支持技术。
中文关键词:智能无人飞艇  CLIPS  故障诊断专家系统
 
Fault Diagnosis Expert System Development for Intelligent Unmanned Airship Based on CLIPS
Abstract:For the intelligent unmanned airships,a fault diagnosis expert system based on CLIPS is designed and developed. Firstly,based on the knowledge of the diagnostic expert,the faults are classified,and the fault tree has been established according to the causal relationship. Secondly,the fact base and rule base are respectively designed with the CLIPS framework,and a forward reasoning control strategy is employed. CLIPS is embedded in the C++ environment by static linking mode. In addition,the "route jump" function is designed to realize the data exchange interface between user input and CLIPS. Finally,the human-computer interaction interface is developed with the MFC framework. The development of the fault diagnosis expert system has improved the irregularity and inefficiency of manual fault diagnosis,and provides a platform and support technology for thefault diagnosis,analysis and elimination of intelligent unmanned airships.
keywords:intelligent unmanned airship  CLIPS  fault diagnosis expert system
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