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Six sigma robust design optimization for thermal protection system of hypersonic vehicles based on successive response surface method
Authors:Jingjing ZHU  Xiaojun WANG  Haiguo ZHANG  Yuwen LI  Ruixing WANG  Zhiping QIU
Abstract:Lightweight design is important for the Thermal Protection System(TPS) of hypersonic vehicles in that it protects the inner structure from severe heating environment. However, due to the existence of uncertainties in material properties and geometry, it is imperative to incorporate uncertainty analysis into the design optimization to obtain reliable results. In this paper, a six sigma robust design optimization based on Successive Response Surface Method(SRSM) is established for the TPS to improve the reliability and robustness with considering the uncertainties. The uncertain parameters related to material properties and thicknesses of insulation layers are considered and characterized by random variables following normal distributions. By employing SRSM, the values of objective function and constraints are approximated by the response surfaces to reduce computational cost. The optimization is an iterative process with response surfaces updating to find the true optimal solution. The optimization of the nose cone of hypersonic vehicle cabin is provided as an example to illustrate the feasibility and effectiveness of the proposed method.
Keywords:Hypersonic vehicle  Six sigma robust optimization  Successive response surface  Thermal protection system  Uncertainty
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