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Value of information-based decision analysis of the optimal next inspection type for deteriorating structural systems

机译:劣化结构系统的最佳下一个检查类型的信息的基于信息的决策分析值

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Deteriorating infrastructure systems require inspections and maintenance to ensure safe operation. System operators are often required to decide the optimal type of inspection to perform, where some inspections are of higher accuracy, and correspondingly higher cost. Life cycle analysis is typically used to determine the optimal inspection type. While life cycle analysis is effective at determining the optimal inspection type, it is also inefficient, requiring analysis of the entire decision sequence throughout the system life cycle. This paper presents an efficient methodology to approximate the decision of the optimal next inspection type without performing a life cycle analysis. This methodology determines the range of the value of information provided by only the next inspection. When the inspection cost is outside the range of the value of information then this method yields the decision of which inspection type to choose, negating the need for life cycle analysis. When the inspection cost for some inspection types lies within the bounds then a subsequent life cycle analysis is required, but perhaps some inspection types can be eliminated, simplifying the life cycle analysis. Thus, this method is complimentary to life cycle analysis, functioning as a quick preliminary assessment. The methodology is demonstrated through a numerical example of a corroding pipeline.
机译:劣化的基础设施系统需要检查和维护以确保安全操作。系统运营商通常需要确定要执行的最佳检查类型,其中一些检查具有更高的准确性,并且相应更高的成本。生命周期分析通常用于确定最佳检查类型。虽然生命周期分析在确定最佳检查类型时有效,但它也效率低下,需要在整个系统生命周期中分析整个决策序列。本文提出了一种有效的方法,以近似最佳的下一个检查类型的决定而不执行生命周期分析。该方法确定仅由下次检查提供的信息的值的范围。当检查成本超出信息值的范围,此方法产生哪些检测类型选择,否定对生命周期分析的需求。当某些检查类型的检查成本在界限内,所以需要随后的生命周期分析,但可能会消除一些检查类型,简化生命周期分析。因此,这种方法是互补的生命周期分析,作为快速初步评估。通过腐蚀管道的数值示例来证明方法。

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