Response surface method and reliability calculation based on the generating function method

K. Sun, Jinyu Zhou
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Abstract

The generating function method is an important tool for the structural reliability analysis and performance assessment of multi-state systems. However, no corresponding solving method is available for implicit limited state functions. Therefore, a response surface method based on the generating function method is proposed, and its reliability is calculated. This method is improved based on the classical response surface method by using the present most dangerous point (minimum) of fitting the limited state function obtained as the design point and the expansion point of the next iteration, making the expansion point closer to the failure surface, enhancing the approximate precision of the limited state function near the failure surface, and providing a feasible way for calculating the system reliability in a highly precise manner with the generating function method of non-uniform discretization. Examples are provided to demonstrate that the new method improves the convergence rate and calculation accuracy and reduces the iterative and cumulative error.
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响应面法和基于生成函数法的可靠度计算
生成函数法是多状态系统结构可靠性分析和性能评估的重要工具。而隐式有限状态函数没有相应的求解方法。为此,提出了一种基于生成函数法的响应面法,并对其可靠性进行了计算。该方法在经典响应面法的基础上进行了改进,将拟合得到的有限状态函数的当前最危险点(最小值)作为设计点和下一次迭代的展开点,使展开点更靠近失效面,提高了失效面附近有限状态函数的近似精度。采用非均匀离散化的生成函数法,为高精度地计算系统可靠度提供了可行的方法。算例表明,新方法提高了收敛速度和计算精度,减小了迭代和累积误差。
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