基于贝叶斯优化的柔性碳纤维反射面卷绕构型预测方法

Prediction of coiled configuration for flexible carbon fiber reflectors based on Bayesian optimization

  • 摘要: 针对柔性反射面天线在卷绕收纳过程中因几何非线性大变形导致的构型预测难题,文章提出一种基于贝叶斯优化的自洽求解方法。首先,基于欧拉–伯努利梁理论,建立单瓣反射面螺旋卷绕收纳过程中的力学平衡微分方程组,以表征载荷与收纳构型之间的映射关系。其次,针对高阶边值问题中边界参数与构型之间复杂的隐函数关系,引入贝叶斯优化构建自洽求解框架,通过高斯过程代理模型高效反演满足几何连续性约束的真实边界参数。最后,通过有限元仿真对所提出的方法进行验证。结果表明,理论预测与仿真结果的卷绕半径相对偏差在1.5%以内,验证了该方法在卷绕构型预测与受力状态分析方面的有效性,可为柔性可展开天线的结构设计与收纳分析提供理论支撑。

     

    Abstract: The coiled configuration of flexible reflector antennas is difficult to predict due to the geometrically nonlinear large deformations that occur during coiling stowage. To address this challenge, a self-consistent solution method based on Bayesian optimization was proposed in this study. First, based on the Euler–Bernoulli beam theory, the mechanical equilibrium differential equations governing the spiral coiling of a single-petal reflector were established, characterizing the relationship between the applied loads and the stowed configuration. Then, to resolve the complex implicit relationships between the boundary parameters and the coiled configuration in this high-order boundary-value problem, Bayesian optimization was introduced to construct a self-consistent framework, in which a Gaussian process surrogate model was employed to efficiently identify the boundary parameters that satisfy the geometric continuity constraints. Finally, the proposed method was validated through finite element simulations. The results show that the relative deviation of the coiling radius between theoretical predictions and simulation results is within 1.5%, demonstrating the effectiveness of the proposed method in coiled configuration prediction and stress state analysis. The proposed method provides theoretical support for the structural design and stowage analysis of flexible reflectors.

     

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