首页> 外文会议>ISA s International Instrumentation Symposiun >INTEGRATED APPROACH TO ENGINEERING DESIGN AND ANALYSIS, VIBRATION FAILURE ANALYSIS, PREVENTION AND LIFE EXTENSION USING FEEDBACK CONTROL SYSTEM CONCEPT
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INTEGRATED APPROACH TO ENGINEERING DESIGN AND ANALYSIS, VIBRATION FAILURE ANALYSIS, PREVENTION AND LIFE EXTENSION USING FEEDBACK CONTROL SYSTEM CONCEPT

机译:使用反馈控制系统概念的工程设计和分析,振动破坏分析,防治,预防和生命延伸的综合方法

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The paper proposes an integrated approach to life cycle management of mechanical systems considering the four core processes of Design cycle analysis, Vibration signature analysis, Failure analysis and prevention, Residual life assessment and life extension. The application is suited for component level as well as large systems like thermal and nuclear power plants. In those cases life cycle management involves developing a strategy for economic and safety related operations for an extended period of life. The subjects of design cycle analysis, vibration and signature analysis, failure analysis and failure prevention and life management have hitherto been dealt with in isolation and decisions were taken pertaining to that restricted field. It is the author's considered opinion that a better and more comprehensive decision can emerge if the results of isolated analyses are considered in an integrated manner at once using the interdependence of parameters considered in each study. A model is evolved linking the above mentioned analyses using a feedback control system model where the output of each study and its influence on the input of the other study is rationally considered. The decisions arrived at from such an integrated control system model would be more holistic than those arrived at from results arising out of separate studies.
机译:本文提出了考虑到设计循环分析,振动特征分析,故障分析和预防,剩余寿命评估和生命延伸的四个核心过程的机械系统生命周期管理的综合方法。该应用程序适用于组件水平以及热和核电厂等大型系统。在这些情况下,生命周期管理涉及在延长的生命期间制定经济和安全相关业务的战略。设计循环分析,振动和签名分析,故障分析和预防预防和终身管理的主题迄今为止,孤立和决定与该限制领域有关。作者认为,如果使用每项研究中考虑的参数的相互依存,可以在一次综合分析的结果以综合方式考虑孤立分析的结果,则可以出现更好更全面的决定。使用反馈控制系统模型的反馈控制系统模型演化了一种与上述分析的模型,其中每个研究的输出及其对其他研究的输入的影响是合理考虑的。从这种综合控制系统模型到达的决定将比单独研究产生的结果到达。

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