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Efficient strategy for reliability-based optimization design of multidisciplinary coupled system with interval parameters

机译:区间参数的多学科耦合系统基于可靠性的优化设计的高效策略

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Non-probabilistic reliability based multidisciplinary design optimization has been widely acknowledged as an advanced methodology for complex system design when the data is insufficient. In this work, the uncertainty propagation analysis method in multidisciplinary system based on subinterval theory is firstly studied to obtain the uncertain responses. Then, based on the non-probabilistic set theory, the interval reliability based multidisciplinary design optimization model is established. Considering that the gradient information of interval reliability cannot be acquired in the whole design domain, which causes convergence difficulties and prohibitive computation, an interval reliability displacement based multidisciplinary design optimization method is proposed to address the issue. In the proposed method, the interval reliability displacement is introduced to measure the degree of interval reliability. By doing so, not only the connotation of the interval reliability is guaranteed, but more importantly, the partial gradient region for interval reliability is equivalently converted into full gradient region for reliability displacement. Consequently, the gradient information can be acquired under any circumstances and thus the convergence process is highly accelerated by utilizing the gradient optimization algorithms. (C) 2019 Elsevier Inc. All rights reserved.
机译:当数据不足时,基于非概率可靠性的多学科设计优化已被广泛认为是用于复杂系统设计的高级方法。在这项工作中,首先研究了基于子区间理论的多学科系统不确定性传播分析方法,以获得不确定性响应。然后,基于非概率集理论,建立了基于区间可靠度的多学科设计优化模型。考虑到区间可靠度的梯度信息无法在整个设计域中获取,导致收敛困难和计算量过大,提出了一种基于区间可靠度位移的多学科设计优化方法。在该方法中,引入了区间可靠度位移来度量区间可靠度。通过这样做,不仅保证了间隔可靠性的内涵,而且更重要的是,将用于间隔可靠性的部分梯度区域等效地转换为用于可靠性位移的全梯度区域。因此,可以在任何情况下获取梯度信息,从而通过利用梯度优化算法可以大大加快收敛过程。 (C)2019 Elsevier Inc.保留所有权利。

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