Reliability assessment of folding wing system deployment performance considering failure correlation

Zhiqiang Zhao, Liyang Xie, Bingfeng Zhao, Lei Wang
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Abstract

The reliability of folding wing deployment performance greatly impacts flight vehicle reliability. Based on the dynamic analysis theory, the deployment dynamic model of folding wing mechanism with joint clearances is established and solved. Considering the failure correlation, the system reliability models are developed for both cases, without considering synchronization and considering synchronization. For the former, a solution method combining saddle point approximation and numerical integration is proposed. For the latter, an estimation method based on a combination of the fourth order moment Pearson distribution family and the numerical integration is proposed. The efficiency and accuracy of the proposed methods are verified through examples. In addition, the trend of the system reliability change when the distribution parameters of random variables are different is also analyzed. From the perspective of improving reliability, the above study can provide theoretical guidance and data support for the design, manufacturing and service process of the folding wing mechanism system.
考虑故障相关性的折叠翼系统部署性能可靠性评估
折叠翼展开性能的可靠性在很大程度上影响飞行器的可靠性。基于动态分析理论,建立并求解了带关节间隙的折叠翼机构展开动态模型。考虑到失效相关性,建立了不考虑同步和考虑同步两种情况下的系统可靠性模型。对于前者,提出了一种结合鞍点近似和数值积分的求解方法。对于后者,提出了一种基于四阶矩皮尔逊分布族和数值积分相结合的估计方法。通过实例验证了所提方法的效率和准确性。此外,还分析了随机变量分布参数不同时系统可靠性的变化趋势。从提高可靠性的角度出发,上述研究可为折叠翼机构系统的设计、制造和服务过程提供理论指导和数据支持。
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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