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A NOVEL STRATEGY FOR PROBABILITY-BASED FAILURE AVOIDANCE OF OPERATING TECHNICAL SYSTEMS

机译:基于概率的操作技术系统故障规避的新策略

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摘要

Failure and fault avoidance techniques are becoming important methodologies due to economical and ecological risks of modern technologies. The basic methodologies and techniques developing safe systems are connected with reliability engineering technologies or fault detection and isolation (FDI) approaches. The contribution introduces into the ideas of the 1997 firstly published SRCE(Safety and Reliability Control Engineering)-concept. Core of the approach is the development of a history- and load-dependent failure rate, which allows the online-calculation of reliability characteristics, which can be monitored or controlled. The classical definitions of reliability engineering characteristics are unfit due to the fact that they are only 'driven' by the time, so effects of changing operating conditions etc. can not be considered directly. The proposed approach solves this problem by introducing a new definition of a failure rate by introducing load- and lifetime-dependent failure rate. This also includes the possibility to consider regenerating/recovering effects of technical systems or components. As an example the determination is illustrated and applied to the monitoring of an automotive tire.
机译:由于现代技术的经济和生态风险,故障和避免故障技术正成为重要的方法。开发安全系统的基本方法和技术与可靠性工程技术或故障检测与隔离(FDI)方法联系在一起。该贡献引入了1997年首次发布的SRCE(安全性和可靠性控制工程)概念的思想。该方法的核心是开发依赖于历史和负载的故障率,该故障率允许在线计算可靠性特征,并可以对其进行监控或控制。可靠性工程特性的经典定义是不合适的,因为它们只是被时间“驱动”,因此不能直接考虑变化的工作条件等的影响。所提出的方法通过引入与负载和寿命有关的故障率,引入了故障率的新定义,从而解决了该问题。这还包括考虑技术系统或组件的再生/恢复效果的可能性。作为示例,该确定被示出并且被应用于汽车轮胎的监视。

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