APPLICATION OF BLOW-UP THEORY TO DETERMINE THE SERVICE LIFE OF SMALL-SERIES AND SINGLE ITEMS

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
V. V. Nahornyi
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 Objective. Application of the blow-up theory in conditions where there are no statistical data on the dynamics of behaviour during the operation of small-series and single items.
 Method. To determine the service life of a particular product manufactured in large series, information obtained for a set of similar products of the same type is used. This information is based on numerous experiments, mathematical statistics and probability theory. When operating small-series and single items, such information is not available. In this case, it is necessary to determine the individual resource of an individual product based on the results of an analysis of its behaviour in the past. The method presented in the article is based on the application for such an analysis of the method used when considering systems operating in blow-up mode. The essence of the technique is to extract the periodic component from the temporal realization of the control parameter. This component is modelled by a Fourier series consisting of log-periodic functions. The main coefficients of these functions are the time equal to the operating time of the product until the end of its service life.
 Results. The method under consideration has been successfully tested in determining the service life of the transport-dumping bridge, related to products that are actually single items.
 Conclusions. An analysis of the experimental data on the behaviour of the load-bearing elements of a transport-dump bridge confirms the assumption about the behaviour of the bridge structure as a system operating in a blow-up mode. This made it possible to determine in advance the service life of the power units of the bridge and obtain the result directly in units of time, without requiring information about the maximum permissible value of the controlled parameter to obtain this information.
 For the first time, the possibility is shown to consider the behaviour of small-series and single items as dynamic systems operating in a blow-up mode.
 Practical significance. A solution to the topical problem of determining the service life of small-series and single items is proposed.","PeriodicalId":43783,"journal":{"name":"Radio Electronics Computer Science Control","volume":"2 1","pages":"0"},"PeriodicalIF":0.2000,"publicationDate":"2023-10-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Radio Electronics Computer Science Control","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.15588/1607-3274-2023-3-19","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"COMPUTER SCIENCE, HARDWARE & ARCHITECTURE","Score":null,"Total":0}
引用次数: 0

Abstract

Context. The actual task of developing a method for determining the service life of small-series and single items based on the blow-up modes theory has been solved. Objective. Application of the blow-up theory in conditions where there are no statistical data on the dynamics of behaviour during the operation of small-series and single items. Method. To determine the service life of a particular product manufactured in large series, information obtained for a set of similar products of the same type is used. This information is based on numerous experiments, mathematical statistics and probability theory. When operating small-series and single items, such information is not available. In this case, it is necessary to determine the individual resource of an individual product based on the results of an analysis of its behaviour in the past. The method presented in the article is based on the application for such an analysis of the method used when considering systems operating in blow-up mode. The essence of the technique is to extract the periodic component from the temporal realization of the control parameter. This component is modelled by a Fourier series consisting of log-periodic functions. The main coefficients of these functions are the time equal to the operating time of the product until the end of its service life. Results. The method under consideration has been successfully tested in determining the service life of the transport-dumping bridge, related to products that are actually single items. Conclusions. An analysis of the experimental data on the behaviour of the load-bearing elements of a transport-dump bridge confirms the assumption about the behaviour of the bridge structure as a system operating in a blow-up mode. This made it possible to determine in advance the service life of the power units of the bridge and obtain the result directly in units of time, without requiring information about the maximum permissible value of the controlled parameter to obtain this information. For the first time, the possibility is shown to consider the behaviour of small-series and single items as dynamic systems operating in a blow-up mode. Practical significance. A solution to the topical problem of determining the service life of small-series and single items is proposed.
应用爆破理论确定小系列和单品的使用寿命
上下文。解决了基于爆破模态理论确定小系列和单件使用寿命方法的实际任务。 目标。爆破理论在没有统计数据的情况下在小系列和单项目运行过程中行为动力学的应用。 方法。为了确定大批量生产的特定产品的使用寿命,使用了一组相同类型的类似产品的信息。这些信息是基于大量的实验、数理统计和概率论。当操作小系列和单项目时,这些信息是不可用的。在这种情况下,有必要根据对其过去行为的分析结果确定单个产品的单个资源。本文中提出的方法是基于在考虑在爆破模式下运行的系统时所使用的方法的这种分析的应用。该技术的核心是从控制参数的时间实现中提取周期分量。该分量由由对数周期函数组成的傅立叶级数建模。这些函数的主要系数是等于产品使用寿命结束前的工作时间。 结果。所考虑的方法已成功地用于确定运输-倾倒桥的使用寿命,涉及的产品实际上是单个项目。结论。对运输-倾卸桥承载构件性能的实验数据分析证实了桥梁结构作为一个爆破模式下运行的系统的性能假设。这使得提前确定桥架动力单元的使用寿命成为可能,并直接以时间为单位获得结果,而不需要获得有关被控参数的最大允许值的信息来获得该信息。第一次证明了将小系列和单个项目的行为考虑为在爆炸模式下运行的动态系统的可能性。现实意义。针对小系列、单项目使用寿命确定的热点问题,提出了一种解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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