TY - JOUR
T1 - Improving bi-level system reliability of multi-disciplinary design synthesis optimization method
AU - Zhang, Daiyu
AU - Song, Baowei
AU - Wang, Peng
AU - Dong, Huachao
PY - 2012/12
Y1 - 2012/12
N2 - For large-scale uncertainty multidisciplinary systems, we present an optimization (bi-Level system reliability of the multi-disciplinary design synthesis optimization) algorithm, called by us RBMDOSB algorithm, where RB stands for Reliability-Based, MDO stands for Multidisciplinary Design Optimization, S stands for SORA (Sequential Optimization and Reliability Assessment) and B stands for BLISS (Bi-Level Integrated System Synthesis). Sections 1 through 3 of the full paper explain our RBMDOSB algorithm. RBMDOSB decomposes the reliability analysis from MDO and performs the deterministic MDO and reliability analysis sequentially under the SORA framework. In this algorithm, performance measure approach (PMA) based on multidisciplinary model is used for reliability analysis, BLISS method is introduced for deterministic MDO, and the amount of movement related to the coupling variables is added to amend the constraints of the MDO problems. Sections 4 gives a numerical example, whose results, presented in Table 1, verify the feasibility and efficiency of our RBMDOSB algorithm.
AB - For large-scale uncertainty multidisciplinary systems, we present an optimization (bi-Level system reliability of the multi-disciplinary design synthesis optimization) algorithm, called by us RBMDOSB algorithm, where RB stands for Reliability-Based, MDO stands for Multidisciplinary Design Optimization, S stands for SORA (Sequential Optimization and Reliability Assessment) and B stands for BLISS (Bi-Level Integrated System Synthesis). Sections 1 through 3 of the full paper explain our RBMDOSB algorithm. RBMDOSB decomposes the reliability analysis from MDO and performs the deterministic MDO and reliability analysis sequentially under the SORA framework. In this algorithm, performance measure approach (PMA) based on multidisciplinary model is used for reliability analysis, BLISS method is introduced for deterministic MDO, and the amount of movement related to the coupling variables is added to amend the constraints of the MDO problems. Sections 4 gives a numerical example, whose results, presented in Table 1, verify the feasibility and efficiency of our RBMDOSB algorithm.
KW - Bi-Level Integrated System Synthesis(BLISS)
KW - Constrained optimization
KW - Design
KW - Efficiency
KW - Estimation
KW - Flowcharting
KW - Mathematical models
KW - Multidisciplinary Design Optimization(MDO)
KW - Probability
KW - Reliability analysis
KW - Sequential Optimization and Reliability Assessment(SORA)
KW - Uncertain systems
UR - http://www.scopus.com/inward/record.url?scp=84872435603&partnerID=8YFLogxK
M3 - 文章
AN - SCOPUS:84872435603
SN - 1000-2758
VL - 30
SP - 808
EP - 813
JO - Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University
JF - Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University
IS - 6
ER -