Article citation info: (*) Tekst artykułu w polskiej wersji językowej dostępny w elektronicznym wydaniu kwartalnika na stronie www.ein.org.pl ZIEJA M, WAŻNY M, STĘPIEŃ S. Outline of a method for estimating the durability of components or device assemblies while maintaining the required reliability level. Eksploatacja i Niezawodnosc - Maintenance and Reliability 2018; 20 (2): 260-266
This paper presents a way of determining distribution of limit state exceedence time by a diagnostic parameter which determines accuracy of maintaining zero state. For calculations it was assumed that the diagnostic parameter is deviation from nominal value (zero state). Change of deviation value occurs as a result of destructive processes which occur during service. For estimation of deviation increasing rate in probabilistic sense, was used a difference equation from which, after transformation, Fokker-Planck differential equation was obtained [4, 11]. A particular solution of the equation is deviation increasing rate density function which was used for determining exceedance probability of limit state. The so-determined probability was then used to determine density function of limit state exceedance time, by increasing deviation. Having at disposal the density function of limit state exceedance time one determined service life of a system of maladjustment. In the end, a numerical example based on operational data of selected aircraft [weapon] sights was presented. The elaborated method can be also applied to determining residual life of shipboard devices whose technical state is determined on the basis of analysis of values of diagnostic parameters.
This article reviews methods that apply in data and information analysis on flight safety and also was made a review of the features and examples of system resources of proactive management of flight safety. It proposes a general methodology for IT support of proactive flight safety management in the form of an algorithm, whose individual elements been described. Was presented an example of the application of the algorithm, selected methods and tools for data analysis and identification of corrective and/or preventive actions, as part of flight safety management and the monitoring of their effectiveness and efficiency through continuous analysis and assessment of data and information from the system, as an element of flight safety management. This article presents a methodological approach to the analysis and assessment of the risks to flight safety with regard to proactive processes
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