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Reliability based design optimization: Formulations and methodologies.

机译:基于可靠性的设计优化:配方和方法。

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Modern products ranging from simple components to complex systems should be designed to be optimal and reliable. The challenge of modern engineering is to ensure that manufacturing costs are reduced and design cycle times are minimized while achieving requirements for performance and reliability. If the market for the product is competitive, improved quality and reliability can generate very strong competitive advantages. Simulation based design plays an important role in designing almost any kind of automotive, aerospace, and consumer products under these competitive conditions. Single discipline simulations used for analysis are being coupled together to create complex coupled simulation tools. This investigation focuses on the development of efficient and robust methodologies for reliability based design optimization in a simulation based design environment.; Original contributions of this research are the development of a novel efficient and robust unilevel methodology for reliability based design optimization, the development of an innovative decoupled reliability based design optimization methodology, the application of homotopy techniques in unilevel reliability based design optimization methodology, and the development of a new framework for reliability based design optimization under epistemic uncertainty.; The unilevel methodology for reliability based design optimization is shown to be mathematically equivalent to the traditional nested formulation. Numerical test problems show that the unilevel methodology can reduce computational cost by at least 50% as compared to the nested approach. The decoupled reliability based design optimization methodology is an approximate technique to obtain consistent reliable designs at lesser computational expense. Test problems show that the methodology is computationally efficient compared to the nested approach. A framework for performing reliability based design optimization under epistemic uncertainty is also developed. A trust region managed sequential approximate optimization methodology is employed for this purpose. Results from numerical test studies indicate that the methodology can be used for performing design optimization under severe uncertainty.
机译:从简单组件到复杂系统的现代产品都应设计为最佳且可靠的产品。现代工程学的挑战是确保在满足性能和可靠性要求的同时降低制造成本并缩短设计周期。如果产品市场竞争激烈,那么质量和可靠性的提高可以产生非常强大的竞争优势。在这些竞争条件下,基于仿真的设计在设计几乎所有类型的汽车,航空航天和消费类产品中都扮演着重要角色。用于分析的单学科模拟被耦合在一起以创建复杂的耦合模拟工具。这项研究的重点是在基于仿真的设计环境中为基于可靠性的设计优化而开发的高效,鲁棒的方法。这项研究的主要贡献是开发了一种新的高效可靠的单层方法,用于基于可靠性的设计优化;创新的解耦可靠性的设计优化方法;同伦技术在基于单层可靠性的设计优化方法中的应用;以及开发基于认知不确定性的基于可靠性的设计优化新框架的设计;基于可靠性的设计优化的单级方法在数学上等效于传统的嵌套公式。数值测试问题表明,与嵌套方法相比,单级方法可以将计算成本至少降低50%。基于解耦可靠性的设计优化方法是一种以较少的计算量获得一致的可靠设计的近似技术。测试问题表明,与嵌套方法相比,该方法的计算效率更高。还建立了在认知不确定性下执行基于可靠性的设计优化的框架。为此目的,使用信任区域管理的顺序近似优化方法。数值测试研究的结果表明,该方法可用于在严重不确定性下进行设计优化。

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