Direct sensor orientation for large scale mapping - Potential, problems, solutions

Direct sensor orientation for large scale mapping - Potential, problems, solutions
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DOI:
10.1111/j.1477-9730.2005.00318.x
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发表时间:
2005-09-01
影响因子:
2.4
通讯作者:
Jacobsen, K
Jacobsen, K
中科院分区:
地球科学3区
文献类型:
--
作者:
Yastikli, N;Jacobsen, K

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几何配准是摄影测量中最重要的任务之一。传统上,它是通过使用众所周知的空中三角测量方法间接实现的。随着全球定位系统和惯性测量装置的集成,这种情况发生了变化。现在可以直接确定外部方位。今天,直接和集成的传感器定向用于广泛的传感器,包括激光雷达和SAR,以及数字行扫描仪系统和航空相机。本文研究了直接和集成传感器定向的性能,为大比例尺测绘使用的数据集的“集成传感器定向”测试的欧洲实验摄影测量研究组织(OEEE-现在被称为EuroSDR)。讨论了传感器直接定向和集成定向的概念、潜力、问题和解决方法。
Georeferencing is one of the most important tasks in photogrammetry. Traditionally it has been achieved indirectly using the well-known method of aerial triangulation. With the availability of integrated GPS and inertial measurement units (IMU), this situation changed. Direct determination of exterior orientation is now possible. Today, direct and integrated sensor orientation is usedfor a wide range of sensors including lidar and SAR, as well as for digital line scanner systems and aerial cameras. This paper investigates the performance of direct and integrated sensor orientation for large scale mapping using the data-set of the "Integrated Sensor Orientation" test of the European Organisation for Experimental Photogrammetric Research (OEEPE-now known as EuroSDR). The concept, potential, problems and solutions of direct and integrated sensor orientation are discussed.