首页> 外文期刊>Photogrammetric Engineering & Remote Sensing: Journal of the American Society of Photogrammetry >Flexible Photogrammetric Computations Using Modular Bundle Adjustment: The Chain Rule and the Collinearity Equations
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Flexible Photogrammetric Computations Using Modular Bundle Adjustment: The Chain Rule and the Collinearity Equations

机译:使用模块化捆绑调整的柔性摄影测量计算:链规则和共线性方程

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摘要

The main purpose of this article is to show that photogrammetric bundle-adjustment computations can be sequentially organized into modules. Furthermore, the chain rule can be used to simplify the computation of the analytical Jacobians needed for the adjustment. Novel projection models can be flexibly evaluated by inserting, modifying, or swapping the order of selected modules. As a proof of concept, two variants of the pinhole projection model with Brown lens distortion were implemented in the open-source Damped Bundle Adjustment Toolbox and applied to simulated and calibration data for a nonconventional lens system. The results show a significant difference for the simulated, error-free, data but not for the real calibration data. The current flexible implementation incurs a performance loss. However, in cases where flexibility is more important, the modular formulation should be a useful tool to investigate novel sensors, data-processing techniques, and refractive models.
机译:本文的主要目的是表明可以将摄影测量捆绑包调整计算顺序组织成模块。 此外,链规则可用于简化调整所需的分析雅各比人的计算。 可以通过插入,修改或交换所选模块的顺序来灵活地评估新的投影模型。 作为概念证据,在开源阻尼束调节工具箱中实现了具有棕色透镜失真的针孔投影模型的两个变型,并应用于非传统透镜系统的模拟和校准数据。 结果显示了模拟,无差错数据的显着差异,但不适用于实际校准数据。 目前的灵活实施会出现性能损失。 然而,在灵活性更为重要的情况下,模块化制剂应该是调查新颖传感器,数据处理技术和折射模型的有用工具。

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