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SPHERICAL IMAGES FOR CULTURAL HERITAGE: SURVEY AND DOCUMENTATION WITH THE NIKON KM360

机译:文化遗产的球面图像:尼康KM360的调查和文档

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The work presented here focuses on the analysis of the potential of spherical images acquired with specific cameras for documentation and three-dimensional reconstruction of Cultural Heritage. Nowadays, thanks to the introduction of cameras able to generate panoramic images automatically, without the requirement of a stitching software to join together different photos, spherical images allow the documentation of spaces in an extremely fast and efficient way. In this particular case, the Nikon Key Mission 360 spherical camera was tested on the Tolentini’s cloister, which used to be part of the convent of the close church and now location of the Iuav University of Venice. The aim of the research is based on testing the acquisition of spherical images with the KM360 and comparing the obtained photogrammetric models with data acquired from a laser scanning survey in order to test the metric accuracy and the level of detail achievable with this particular camera. This work is part of a wider research project that the Photogrammetry Laboratory of the Iuav University of Venice has been dealing with in the last few months; the final aim of this research project will be not only the comparison between 3D models obtained from spherical images and laser scanning survey’s techniques, but also the examination of their reliability and accuracy with respect to the previous methods of generating spherical panoramas. At the end of the research work, we would like to obtain an operational procedure for spherical cameras applied to metric survey and documentation of Cultural Heritage.
机译:本文介绍的工作重点在于分析使用特定摄像机拍摄的球形图像的潜力,以进行文献记录和文化遗产的三维重建。如今,由于引入了能够自动生成全景图像的相机,而无需使用拼接软件将不同的照片连接在一起,球形图像可以以极其快速和有效的方式记录空间。在这种特殊情况下,尼康Key Mission 360球面相机已在托伦蒂尼的回廊上进行了测试,回廊曾是封闭教堂的修道院,现在是威尼斯Iuav大学所在地。该研究的目的是基于使用KM360测试球形图像的采集,并将获得的摄影测量模型与从激光扫描测量中获得的数据进行比较,以测试该特定相机可实现的度量精度和细节水平。这项工作是最近一个月的研究,该研究是威尼斯Iuav大学摄影测量实验室正在进行的更广泛的研究项目的一部分。该研究项目的最终目标不仅是将球面图像获得的3D模型与激光扫描测量技术进行比较,还将检验其与以前生成球面全景图方法相比的可靠性和准确性。在研究工作结束时,我们想获得一种球形相机的操作程序,该程序适用于度量标准调查和文化遗产文献。

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