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Photogrammetric modeling of the relative orientation in underwater environments

机译:水下环境中相对方位的摄影测量建模

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摘要

Underwater photogrammetry provides an efficient means for documentation of environments which are complex and have limited accessibility. Yet the establishment of reference control networks in such settings is oftentimes difficult. In this regard, use of the coplanarity condition, which requires neither knowledge of object space coordinates nor setting a reference control network, seems to be an attractive solution. However, the coplanarity relation does not hold in such environments because of the refraction effect, and methods that have been proposed thus far for geometrical modeling of its effect require knowledge of object-space quantities. Thus, this paper proposes a geometrically-driven approach which fulfills the coplanarity condition and thereby requires no knowledge of object space data. Such an approach may prove useful not only for object space reconstruction but also as a preparatory step for application of bundle block adjustment and for outlier detection. All are key features in photogrammetric practices. Results show that no unique setup is needed for estimating the relative orientation parameters using the model and that high levels of accuracy can be achieved.
机译:水下摄影测量为记录复杂且可访问性有限的环境提供了一种有效的手段。然而,在这样的环境中建立参考控制网络通常是困难的。在这方面,使用共面条件既不需要了解对象空间坐标,也不需要设置参考控制网络,似乎是一种有吸引力的解决方案。然而,由于折射效应,共面关系在这样的环境中不成立,并且迄今已经提出的对其效应进行几何建模的方法需要了解对象空间量。因此,本文提出了一种几何驱动的方法,该方法可以满足共面性条件,因此不需要了解对象空间数据。这种方法不仅可以用于对象空间重建,而且可以作为应用束块调整和异常检测的准备步骤。所有这些都是摄影测量实践中的关键功能。结果表明,无需使用唯一的设置即可使用该模型估算相对方向参数,并且可以实现较高的准确性。

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