期刊文献+

Early faults prediction of running state of electromechanical systems and reconfigurable integration of series safety monitoring systems 被引量:3

Early faults prediction of running state of electromechanical systems and reconfigurable integration of series safety monitoring systems
下载PDF
导出
摘要 Fault prediction technology of running state of electromechanical systems is one of the key technologies that ensure safe and reliable operation of electromechanical equipment in health state. For multiple types of modern, high-end and key electromechanical equipment, this paper will describe the early faults prediction method for multi-type electromechanical systems, which is favorable for predicting early faults of complex electromechanical systems in non-stationary, nonlinear, variable working conditions and long-time running state; the paper shall introduce the reconfigurable integration technology of series safety monitoring systems based on which the integrated development platform of series safety monitoring systems is built. This platform can adapt to integrated R&D of series safety monitoring systems characterized by high technology, multiple species and low volume. With the help of this platform, series safety monitoring systems were developed, and the Remote Network Security Monitoring Center for Facility Groups was built. Experimental research and engineering applications show that: this new fault prediction method has realized the development trend features extraction of typical electromechanical systems, multi-information fusion, intelligent information decision-making and so on, improving the processing accuracy, relevance and applicability of information; new reconfigurable integration technologies have improved the integration level and R&D efficiency of series safety monitoring systems as well as expanded the scope of application; the series safety monitoring systems developed based on reconfigurable integration platform has already played an important role in many aspects including ensuring safety operation of equipment, stabilizing product quality, optimizing running state, saving energy consumption, reducing environmental pollution, improving working conditions, carrying out scientific maintenance, advancing equipment utilization, saving maintenance charge and enhancing the level of information management. Fault prediction technology of running state of electromechanical systems is one of the key technologies that ensure safe and reliable operation of electromechanical equipment in health state. For multiple types of modern, high-end and key electromechanical equipment, this paper will describe the early faults prediction method for multi-type electromechanical systems, which is favorable for predicting early faults of complex electromechanical systems in non-stationary, nonlinear, variable working conditions and long-time running state; the paper shall introduce the reconfigurable integration technology of series safety monitoring systems based on which the integrated development platform of series safety monitoring systems is built. This platform can adapt to integrated R&D of series safety monitoring systems characterized by high technology, multiple species and low volume. With the help of this platform, series safety monitoring systems were developed, and the Remote Network Security Monitoring Center for Facility Groups was built. Experimental research and engineering applications show that: this new fault prediction method has realized the development trend features extraction of typical electromechanical systems, multi-information fusion, intelligent information decision-making and so on, improving the processing accuracy, relevance and applicability of information; new reconfigurable integration technologies have improved the integration level and R&D efficiency of series safety monitoring systems as well as expanded the scope of application; the series safety monitoring systems developed based on reconfigurable integration platform has already played an important role in many aspects including ensuring safety operation of equipment, stabilizing product quality, optimizing running state, saving energy consumption, reducing environmental pollution, improving working conditions, carrying out scientific maintenance, advancing equipment utilization, saving maintenance charge and enhancing the level of information management.
出处 《仪器仪表学报》 EI CAS CSCD 北大核心 2014年第S2期224-232,共9页 Chinese Journal of Scientific Instrument
基金 Supported by National Natural Science Fund Project(51275052) Key project supported by Beijing Municipal Natural Science Foundation(3131002) Open topic of Key Laboratory of Key Laboratory of Modern Measurement & Control Technology,Ministry of Education(KF20141123202,KF20111123201)
关键词 ELECTROMECHANICAL SYSTEMS EARLY FAULTS safety control monitoring SYSTEMS RECONFIGURABLE INTEGRATION electromechanical systems early faults safety control monitoring systems reconfigurable integration
  • 相关文献

参考文献4

二级参考文献30

  • 1方鹏,赵秀才.自动测试系统中的仪器可互换技术及其应用[J].仪器仪表学报,2007,28(S1):70-73. 被引量:6
  • 2马骋,熊剑平,贾惠波.机电测控系统模块化柔性硬件平台的设计[J].仪器仪表学报,2006,27(z2):1472-1473. 被引量:3
  • 3任献彬.ATS中的仪器可互换技术[J].宇航计测技术,2006,26(1):48-51. 被引量:13
  • 4王勇,曹妍.基于移动平台的自动测试系统[J].电子测量与仪器学报,2006,20(1):89-91. 被引量:4
  • 5AMERONGEN V, BREEDVELD J. Modeling of physical systems for the design and control of mechatronic systems [J]. Annual Reviews in Control, 2003,27 ( 1 ) : 87-118.
  • 6HOSKE M T. Flexible digital I/O module [ J ]. Control Engineering, 2006,53 (2) :63-63.
  • 7WANG J F, TSE P W, HE L S. Remote sensing, diagnosis and collaborative maintenance with Web-enabled virtual instruments and mini-servers [ J]. International Journal of Advanced Manufacturing Technology, 2004,24 (9-10) :764-772.
  • 8RICHARD N, CALLAHAN, KEVIN M H, SHAWN D S. Computational methods for planning and developing flexible manufacturing systems [J]. Engineering Computations, 2005,22 (8) :958-971.
  • 9American Petroleum Institute. API 581 Risk-Based Inspec- tion Base Resource Document [S]. 2000.
  • 10American Petroleum Institute. API 581 Risk-Based Inspec- tion Technology [S]. 2008.

共引文献14

同被引文献12

引证文献3

二级引证文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部