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Risk-Based Design Optimization Via Probability of Failure,Conditional Value-at-Risk, and Buffered Probability of Failure

机译:通过故障概率,条件风险值和缓冲的故障概率进行基于风险的设计优化

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When designing systems, uncertainties must be dealt with at various levels. The designer must define appropriate cost and constraint functions that account for such uncertainties and capture the risk associated with unwanted system behavior. The choice of these cost and constraint functions additionally plays an important role in the convergence behavior of the optimization and, among other things, the final design. This paper studies different types of risk-based optimization problem formulations that can aid in efficient and robust design of complex engineering systems. In tutorial form, the paper describes risk-based optimization problem formulations, specifically, reliability-based design optimization, conditional-value-at-risk-based optimization, and buffered-failure-probability-based optimization. The properties of each formulation are analyzed and general guidelines for the appropriate choice of the optimization problem are provided for a given application setup. An in-depth understanding of the different optimization problems should facilitate development of future methods for designing safe engineering systems.
机译:在设计系统时,必须在各个层次上处理不确定性。设计人员必须定义适当的成本和约束函数,以解决此类不确定性并捕获与不良系统行为相关的风险。这些成本和约束函数的选择在优化的收敛行为以及最终设计的收敛行为中也起着重要作用。本文研究了各种类型的基于风险的优化问题公式,这些公式可以帮助复杂工程系统进行高效而稳健的设计。在教程形式中,本文描述了基于风险的优化问题公式,特别是基于可靠性的设计优化,基于条件风险值的优化和基于缓冲故障概率的优化。各制剂的性能进行了分析和被提供用于给定的应用设置为最优化问题的合适的选择一般准则。对不同优化问题的深入了解应有助于开发未来设计安全工程系统的方法。

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