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一种基于移轴摄影技术的新型多数码相机系统。

A novel multi-digital camera system based on tilt-shift photography technology.

作者信息

Sun Tao, Fang Jun-Yong, Zhao Dong, Liu Xue, Tong Qing-Xi

机构信息

Key Laboratory of Technology in Geo-spatial Information Processing and Application System, Institute of Electronics, Chinese Academy of Sciences, Beijing 100190, China.

National Engineering Research Center for Geo-informatics, Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Sensors (Basel). 2015 Mar 31;15(4):7823-43. doi: 10.3390/s150407823.

Abstract

Multi-digital camera systems (MDCS) are constantly being improved to meet the increasing requirement of high-resolution spatial data. This study identifies the insufficiencies of traditional MDCSs and proposes a new category MDCS based on tilt-shift photography to improve ability of the MDCS to acquire high-accuracy spatial data. A prototype system, including two or four tilt-shift cameras (TSC, camera model: Nikon D90), is developed to validate the feasibility and correctness of proposed MDCS. Similar to the cameras of traditional MDCSs, calibration is also essential for TSC of new MDCS. The study constructs indoor control fields and proposes appropriate calibration methods for TSC, including digital distortion model (DDM) approach and two-step calibrated strategy. The characteristics of TSC are analyzed in detail via a calibration experiment; for example, the edge distortion of TSC. Finally, the ability of the new MDCS to acquire high-accuracy spatial data is verified through flight experiments. The results of flight experiments illustrate that geo-position accuracy of prototype system achieves 0.3 m at a flight height of 800 m, and spatial resolution of 0.15 m. In addition, results of the comparison between the traditional (MADC II) and proposed MDCS demonstrate that the latter (0.3 m) provides spatial data with higher accuracy than the former (only 0.6 m) under the same conditions. We also take the attitude that using higher accuracy TSC in the new MDCS should further improve the accuracy of the photogrammetry senior product.

摘要

多数码相机系统(MDCS)正在不断改进,以满足对高分辨率空间数据日益增长的需求。本研究识别了传统MDCS的不足之处,并提出了一种基于移轴摄影的新型MDCS,以提高MDCS获取高精度空间数据的能力。开发了一个原型系统,包括两个或四个移轴相机(TSC,相机型号:尼康D90),以验证所提出的MDCS的可行性和正确性。与传统MDCS的相机类似,校准对于新型MDCS的TSC也至关重要。该研究构建了室内控制场,并为TSC提出了适当的校准方法,包括数字畸变模型(DDM)方法和两步校准策略。通过校准实验详细分析了TSC的特性;例如,TSC的边缘畸变。最后,通过飞行实验验证了新型MDCS获取高精度空间数据的能力。飞行实验结果表明,原型系统在800米飞行高度时的地理位置精度达到0.3米,空间分辨率为0.15米。此外,传统(MADC II)和所提出的MDCS之间的比较结果表明,在相同条件下,后者(0.3米)提供的空间数据精度高于前者(仅0.6米)。我们还认为,在新型MDCS中使用更高精度的TSC应进一步提高摄影测量高级产品的精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f82/4431211/b28c5a29d924/sensors-15-07823-g001.jpg

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