Sequential Optimization and Reliability Assessment Method for Efficient Probabilistic Design

Метод последовательной оптимизации и оценки надежности для эффективного вероятностного проектирования
Xiaoping Du, Wei Chen
2004-03-01

Probabilistic designReliability-based designRobust designSequential optimization and reliability assessmentVehicle crashworthiness
Probabilistic design, such as reliability-based design and robust design, offers tools for making reliable decisions with the consideration of uncertainty associated with design variables/parameters and simulation models. Since a probabilistic optimization often involves a double-loop procedure for the overall optimization and iterative probabilistic assessment, the computational demand is extremely high. In this paper, the sequential optimization and reliability assessment (SORA) is developed to improve the efficiency of probabilistic optimization. The SORA method employs a single-loop strategy with a serial of cycles of deterministic optimization and reliability assessment. In each cycle, optimization and reliability assessment are decoupled from each other; the reliability assessment is only conducted after the deterministic optimization to verify constraint feasibility under uncertainty. The key to the proposed method is to shift the boundaries of violated constraints (with low reliability) to the feasible direction based on the reliability information obtained in the previous cycle. The design is quickly improved from cycle to cycle and the computational efficiency is improved significantly. Two engineering applications, the reliability-based design for vehicle crashworthiness of side impact and the integrated reliability and robust design of a speed reducer, are presented to demonstrate the effectiveness of the SORA method.
1
SORA decouples deterministic optimization from uncertainty-based reliability assessment, performing reliability checks only after each optimization step to verify constraint feasibility.
2
SORA is demonstrated in vehicle side-impact crashworthiness reliability-based design and integrated reliability-robust speed-reducer design applications.
3
The Sequential Optimization and Reliability Assessment (SORA) method improves probabilistic optimization efficiency through a single-loop sequence of deterministic optimization and reliability-assessment cycles.
4
The method shifts violated constraint boundaries toward the feasible region using reliability information from the preceding cycle, enabling rapid design improvement.
5
The reported applications show that SORA significantly improves computational efficiency compared with conventional double-loop probabilistic optimization procedures.

sequential optimization and reliability assessment (SORA) method for probabilistic design

computationally efficient single-loop probabilistic optimization through cyclic decoupling of deterministic optimization and reliability assessment, with constraint-boundary shifting based on reliability information

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2004-03-01
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Xiaoping Du
Wei Chen
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