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Configuration optimization of photogrammetry system based on spectral radius for on-orbit measurement

机译:基于轨道测量光谱半径的摄影测量系统配置优化

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摘要

Non-contact optical measurement is a potential approach to on-orbit vibration measurement for flexible appendages, providing dynamic information for spacecraft control system. Binocular photogrammetry system is a practical configuration to achieve this measurement. In this paper, optimization approach and strategy for configuration parameters of this system are raised. Measurement matrix is specially defined to obtain the objective function for the optimization. Successive linear programming algorithm is used for optimization iteration. Transient responses of flexible appendages calculated by finite element model and corresponding images generated by OpenGL help to achieve this simulation-based optimization. The feasibility and effectiveness of the optimization are verified both by numerical study and experiment. Error analysis of the optimal system reveals great improvement in accuracy and robustness after optimization. This optimization is a promising approach to designing the configuration of binocular photogrammetry system and helping to achieve reliable on-orbit dynamic measurement results.
机译:非接触式光学测量是挠性附件在轨振动测量的一种潜在方法,为航天器控制系统提供动态信息。双目摄影测量系统是实现这种测量的一种实用配置。本文提出了该系统结构参数的优化方法和策略。为了获得优化的目标函数,特别定义了测量矩阵。优化迭代采用逐次线性规划算法。通过有限元模型计算柔性附件的瞬态响应,并通过OpenGL生成相应的图像,有助于实现这种基于仿真的优化。通过数值研究和实验验证了优化的可行性和有效性。对优化系统的误差分析表明,优化后的系统在精度和鲁棒性方面都有很大提高。这种优化方法对于设计双目摄影测量系统的结构和获得可靠的在轨动态测量结果是一种很有前途的方法。

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