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Reliability analysis of complex systems based on the probability dynamics of subsystem failures and deviation of parameters

机译:基于子系统故障的概率动力学和参数偏差的复杂系统可靠性分析

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Radio-electronic means for various purposes are classified as complex systems and are characterized by a multilevel hierarchical structure in the form of separate units, blocks, and modules. As the system is influenced by a complex of factors in the process of operation, reliability of complex systems functioning depends on the reliability of the system elements and optimal distribution of reliability indicators between the elements of the system. The purpose of this article is to define the reliability requirements for structural elements, taking into account failure rates, and possible gradual changes in parameters of the designed system elements. It is required to ensure the minimum cost for a given level of the system reliability. Systems analysis method, reliability of complex systems theory and probability theory are used in the article with reference to failure rates and changing parameters in the process of operation. This approach provides an opportunity to complement the known methods and to obtain analytical expressions for solving design problems of ensuring the reliability with reference to possible gradual and sudden failures, as well as possible gradual changing in parameters of the designed system elements. It is proposed to apply the developed methodology for defining the reliability requirements for the elements of complex technical systems at the early design stages, when the lack of information makes it impossible to find the optimal distribution of reliability norms for structural elements, providing the minimum total cost of the product. In addition, the method for determining the reliability of structural elements can be used to design highly reliable onboard radio-electronic systems of long-term operation.
机译:出于各种目的的无线电电子手段被归类为复杂的系统,其特征在于以单独的单元,块和模块的形式的多层结构。由于系统在操作过程中受多种因素的影响,因此复杂系统运行的可靠性取决于系统元素的可靠性以及系统各元素之间可靠性指标的最佳分配。本文的目的是在考虑故障率以及所设计的系统元素的参数可能逐渐变化的情况下,定义结构元素的可靠性要求。对于给定级别的系统可靠性,需要确保最低成本。本文结合系统的分析方法,复杂系统的可靠性理论和概率论,结合故障率和运行过程中的参数变化进行了研究。这种方法提供了一种机会,可以补充已知的方法,并获得解析表达式,以解决设计问题,以确保在考虑到可能的渐进式和突发性故障以及所设计的系统元素的参数可能逐渐变化的情况下确保可靠性。当缺乏信息使得无法找到结构元件可靠性规范的最佳分布时,建议采用发达的方法在早期设计阶段就定义复杂技术系统元件的可靠性要求。产品成本。另外,用于确定结构元件的可靠性的方法可以用于设计长期运行的高度可靠的机载无线电电子系统。

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