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A RELIABILITY-BASED DESIGN METHOD USING SIMULATION TECHNIQUES AND EFFICIENT OPTIMIZATION APPROACH

机译:基于仿真技术和高效优化方法的基于可靠性的设计方法

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摘要

A novel reliability-based design optimization (RBDO) method using simulation-based techniques for reliability assessments and efficient optimization approach is presented in this paper. In RBDO, model-based reliability analysis needs to be performed to calculate the probability of not satisfying a reliability constraint and the gradient of this probability with respect to each design variable. Among model-based methods, the most widely used in RBDO is the first-order reliability method (FORM). However, FORM could be inaccurate for nonlinear problems and is not applicable for system reliability problems. This paper develops an efficient optimization methodology to perform RBDO using simulation-based techniques. By combining analytical and simulation-based reliability methods, accurate probability of failure and sensitivity information is obtained. The use of simulation also enables both component and system-level reliabilities to be included in RBDO formulation. Instead of using a traditional RBDO formulation in which optimization and reliability computations are nested, a sequential approach is developed to greatly reduce the computational cost. The efficiency of the proposed RBDO approach is enhanced by using a multi-modal adaptive importance sampling technique for simulation-based reliability assessment; and by treating the inactive reliability constraints properly in optimization. A vehicle side impact problem is used to demonstrate the capabilities of the proposed method.
机译:本文提出了一种新的基于可靠性的设计优化(RBDO)方法,该方法采用基于仿真的技术进行可靠性评估和有效的优化方法。在RBDO中,需要执行基于模型的可靠性分析,以计算不满足可靠性约束的概率以及该概率相对于每个设计变量的梯度。在基于模型的方法中,RBDO中使用最广泛的是一阶可靠性方法(FORM)。但是,FORM对于非线性问题可能不准确,不适用于系统可靠性问题。本文开发了一种有效的优化方法,以使用基于仿真的技术来执行RBDO。通过结合分析和基于仿真的可靠性方法,可以获得准确的故障概率和敏感度信息。使用仿真还可以使RBDO公式同时包含组件和系统级的可靠性。代替使用嵌套了优化和可靠性计算的传统RBDO公式,开发了一种顺序方法来大大降低计算成本。提出的RBDO方法的效率通过使用多模态自适应重要性抽样技术进行基于仿真的可靠性评估而得以提高;并通过在优化中适当处理非活动的可靠性约束。车辆侧面碰撞问题用于证明所提出方法的功能。

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