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首页> 外文期刊>Advances in Mechanical Engineering >A concurrent reliability optimization procedure in the earlier design phases of complex engineering systems under epistemic uncertainties:
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A concurrent reliability optimization procedure in the earlier design phases of complex engineering systems under epistemic uncertainties:

机译:认知不确定性下复杂工程系统早期设计阶段的并发可靠性优化过程:

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Concurrent engineering has obtained increasing attention to solve the design problems of multidisciplinary systems. In practical engineering, there are epistemic uncertainties during whole design cycle of complex systems. Especially in earlier design phases, the effects of epistemic uncertainties are not usually easy to be quantified. It is because design information is insufficient. Furthermore, commonly used probability theory is also not suitable to be utilized. In this situation, epistemic uncertainties will be introduced unavoidably by mathematical models or simulation tools and may affect the performance of complex system significantly. To solve this problem, evidence theory is introduced and combined with the collaborative optimization method in this study. An evidence-based collaborative reliability optimization method is also proposed. Evidence theory is a powerful approach to handle epistemic uncertainties by Plausibility and Belief. Meanwhile, collaborative optimization is widely utilized in th...
机译:并行工程越来越受到关注,以解决多学科系统的设计问题。在实际工程中,在复杂系统的整个设计周期中存在认知不确定性。特别是在较早的设计阶段,认知不确定性的影响通常不容易量化。这是因为设计信息不足。此外,通常使用的概率理论也不适合使用。在这种情况下,数学模型或仿真工具将不可避免地引入认知不确定性,并且可能会严重影响复杂系统的性能。为了解决这个问题,本研究引入了证据理论并将其与协同优化方法相结合。还提出了一种基于证据的协同可靠性优化方法。证据理论是通过可信度和信念处理认知不确定性的有力方法。同时,协同优化被广泛应用于...

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