A system to monitor the operational state of a coal mine drainage system is presented, fault problems are diagnosed and solved. The system includes a Single Chip Microprocessor (SCM) Atmega169 and an industrial PC use...A system to monitor the operational state of a coal mine drainage system is presented, fault problems are diagnosed and solved. The system includes a Single Chip Microprocessor (SCM) Atmega169 and an industrial PC used as a master-slave structure. Characteristic parameters of the drainage system were extracted and analysed. As well, a research project on the fault diagnosis of centrifugal water pump based on a fuzzy synthetic evaluation method is initiated. The proposed monitoring and fault diagnostic system can improve the automation, safety, reliability, economy and efficiency of mine drainage systems considerably, decrease blindness and shorten the time required for water pump maintenance.展开更多
针对盾构机液压推进系统的智能故障诊断系统设计的相关问题,以中铁十四局在工程项目中使用的泥水盾构机为研究对象,介绍了盾构机液压推进系统的工作原理,利用故障影响模式及危害性分析(Failure Mode, Effects and Criticality Analysis,...针对盾构机液压推进系统的智能故障诊断系统设计的相关问题,以中铁十四局在工程项目中使用的泥水盾构机为研究对象,介绍了盾构机液压推进系统的工作原理,利用故障影响模式及危害性分析(Failure Mode, Effects and Criticality Analysis, FMECA)方法对推进系统的故障模式和故障机理进行了梳理总结,并根据推进系统的工作原理,结合AMESim软件建立了系统的仿真模型,通过修改模型参数模拟出液压缸泄漏、溢流阀泄漏、换向阀泄漏、调速阀损坏4种常见故障模式。在此基础之上,提出基于有源自回归(Auto-Regressive with Extra Inputs, ARX)模型和模糊C-均值聚类(Fuzzy C-means, FCM)聚类相结合的故障诊断方法,该方法利用ARX模型对多传感器数据进行融合,提取不同故障模式的故障特征,并通过FCM算法根据故障特征对不同的故障模式进行诊断识别。仿真结果表明,基于ARX-FCM的故障诊断方法可以对每种故障模式进行精准的识别,能够有效的应用于盾构机液压推进系统的故障诊断系统设计中。展开更多
基金provided by the Scientific Research Program of Shaanxi Province,Department of Education (No.09JK582)
文摘A system to monitor the operational state of a coal mine drainage system is presented, fault problems are diagnosed and solved. The system includes a Single Chip Microprocessor (SCM) Atmega169 and an industrial PC used as a master-slave structure. Characteristic parameters of the drainage system were extracted and analysed. As well, a research project on the fault diagnosis of centrifugal water pump based on a fuzzy synthetic evaluation method is initiated. The proposed monitoring and fault diagnostic system can improve the automation, safety, reliability, economy and efficiency of mine drainage systems considerably, decrease blindness and shorten the time required for water pump maintenance.
文摘针对盾构机液压推进系统的智能故障诊断系统设计的相关问题,以中铁十四局在工程项目中使用的泥水盾构机为研究对象,介绍了盾构机液压推进系统的工作原理,利用故障影响模式及危害性分析(Failure Mode, Effects and Criticality Analysis, FMECA)方法对推进系统的故障模式和故障机理进行了梳理总结,并根据推进系统的工作原理,结合AMESim软件建立了系统的仿真模型,通过修改模型参数模拟出液压缸泄漏、溢流阀泄漏、换向阀泄漏、调速阀损坏4种常见故障模式。在此基础之上,提出基于有源自回归(Auto-Regressive with Extra Inputs, ARX)模型和模糊C-均值聚类(Fuzzy C-means, FCM)聚类相结合的故障诊断方法,该方法利用ARX模型对多传感器数据进行融合,提取不同故障模式的故障特征,并通过FCM算法根据故障特征对不同的故障模式进行诊断识别。仿真结果表明,基于ARX-FCM的故障诊断方法可以对每种故障模式进行精准的识别,能够有效的应用于盾构机液压推进系统的故障诊断系统设计中。