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Estimating reliability of degraded system based on the probability density evolution with multi-parameter

机译:基于多参数概率密度演化的退化系统可靠性估计

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System degradation was usually caused by multiple-parameter degradation. The assessment result of system reliability by universal generating function was low accurate when compared with the Monte Carlo simulation. And the probability density function of the system output performance cannot be got. So the reliability assessment method based on the probability density evolution with multi-parameter was presented for complexly degraded system. Firstly, the system output function was founded according to the transitive relation between component parameters and the system output performance. Then, the probability density evolution equation based on the probability conservation principle and the system output function was established. Furthermore, probability distribution characteristics of the system output performance was obtained by solving differential equation. Finally, the reliability of the degraded system was estimated. This method did not need to discrete the performance parameters and can establish continuous probability density function of the system output performance with high calculation efficiency and low cost. Numerical example shows that this method is applicable to evaluate the reliability of multi-parameter degraded system.
机译:系统降级通常是由多参数降级引起的。与蒙特卡洛模拟相比,通用生成函数对系统可靠性的评估结果准确性较低。并且无法获得系统输出性能的概率密度函数。因此,提出了一种基于概率参数多指标演化的可靠性评估方法。首先,根据部件参数与系统输出性能之间的传递关系,建立了系统输出功能。然后,建立了基于概率守恒原理和系统输出函数的概率密度演化方程。此外,通过求解微分方程获得了系统输出性能的概率分布特征。最后,评估了退化系统的可靠性。该方法不需要离散性能参数,可以建立系统输出性能的连续概率密度函数,计算效率高,成本低。数值算例表明,该方法适用于评估多参数退化系统的可靠性。

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