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Reliability analysis of discrete time series-parallel systems with uncertain parameters

机译:不确定参数离散时间序列平行系统的可靠性分析

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Reliability is an important index to describe the quality of an individual unit or a complex system. In practice, it is possible that lifetimes of the system units can estimate their probability distributions by previous experience, however, there may be only few or no samples to ascertain their distribution parameters. In order to deal with this case, this paper proposes a discrete time series-parallel system with uncertain parameters, which is studied based on both probability theory and uncertainty theory. Besides, redundant standby methods of improving the system reliability are provided, including cold, warm and hot. The lifetimes of units in redundant systems are assumed to be independent and non-identical discrete distributions, which distribution parameters are uncertain variables. Some formulas are given to calculate the reliability and mean time to failure of these systems. In addition, some numerical examples are given to illustrate different system models.
机译:可靠性是描述单个单元或复杂系统的质量的重要指标。在实践中,系统单元的寿命可以通过先前的经验来估计它们的概率分布,然而,可能只有很少或没有样品来确定其分布参数。为了处理这种情况,本文提出了一种具有不确定参数的离散时间序列并行系统,基于概率理论和不确定性理论研究。此外,提供了提高系统可靠性的冗余备用方法,包括冷,温暖和热。假设冗余系统中单位的寿命是独立的和非相同的离散分布,其中分布参数是不确定的变量。给出了一些公式来计算这些系统的可靠性和平均时间。另外,给出了一些数值示例来示出不同的系统模型。

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