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Interval differential evolution with dimension-reduction interval analysis method for uncertain optimization problems

机译:不确定性优化问题的区间缩减演化的降维区间分析方法

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摘要

A constrained nonlinear interval optimization method under the framework of differential evolution algorithm is developed to solve the uncertain structural optimization problems with interval uncertainties. The proposed method is a direct optimization method based on the interval differential evolution and dimension-reduction interval analysis. The interval preferential rule based on the satisfaction value of interval possibility degree model is used to realize the direct interval ranking of different design vectors. At each evolutionary generation, the outer optimizer by differential evolution optimizer searches for the best solution within the design space. The dimension-reduction interval analysis is employed to calculate the intervals of objective and constraints for each design vector in the inner layer. This operation transforms the original nesting optimization problem into a single loop one which improves the computational efficiency of the proposed method. Finally, the effectiveness of the presented direct method is verified by two numerical examples and an engineering application. (C) 2018 Elsevier Inc. All rights reserved.
机译:提出了一种在差分进化算法框架下的约束非线性区间优化方法,以解决区间不确定性的不确定结构优化问题。该方法是一种基于区间差分演化和降维区间分析的直接优化方法。基于区间可能性度模型的满意度值的区间优先规则,用于实现不同设计向量的直接区间排序。在每个演化代中,外部优化器由差分演化优化器在设计空间内搜索最佳解决方案。降维间隔分析用于计算内层中每个设计矢量的目标间隔和约束条件。该操作将原始的嵌套优化问题转换为单个循环,从而提高了所提出方法的计算效率。最后,通过两个数值算例和工程应用验证了本文提出的直接方法的有效性。 (C)2018 Elsevier Inc.保留所有权利。

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