{"title":"Multi-resolution Modeling of Complex and Detailed Cultural Heritage","authors":"Fabio Remondino, S. Girardi, L. Gonzo, A. Rizzi","doi":"10.2312/VAST/VAST08/001-008","DOIUrl":null,"url":null,"abstract":"The article reports the interdisciplinary project of the virtualization of the Great Inscription of Gortyna (Crete) for 3D documentation, structural studies and physical replica purposes. The digitization of the longest epigraphic text of the Greek civilization (6 m long and 1.75 m high, with ca 2-3 mm depth engraved letters) and its surrounding heritage area (ca 30 x 30 m), required a long planning and the construction of a dedicated acquisition system to speed up the surveying time, limited to few hours per day. Primarily range sensors were employed in a multi-resolution way, digitizing detailed parts in highresolution and less smoothed areas with lower geometric resolution. Some selected areas were also modeled with our multi-photo geometrically constrained image matching approach to demonstrate that the same accuracy and details can be achieved using either scanners or photogrammetry. The derived 3D model of the heritage is now the basis for further archaeological studies on the incision techniques and a deeper structural analysis on the monument. The challenges of the work stay in the acquisition, processing and integration of the multi-resolution data as well as their visualization.","PeriodicalId":168094,"journal":{"name":"IEEE Conference on Visual Analytics Science and Technology","volume":"11 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2008-12-02","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"16","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"IEEE Conference on Visual Analytics Science and Technology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2312/VAST/VAST08/001-008","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 16
Abstract
The article reports the interdisciplinary project of the virtualization of the Great Inscription of Gortyna (Crete) for 3D documentation, structural studies and physical replica purposes. The digitization of the longest epigraphic text of the Greek civilization (6 m long and 1.75 m high, with ca 2-3 mm depth engraved letters) and its surrounding heritage area (ca 30 x 30 m), required a long planning and the construction of a dedicated acquisition system to speed up the surveying time, limited to few hours per day. Primarily range sensors were employed in a multi-resolution way, digitizing detailed parts in highresolution and less smoothed areas with lower geometric resolution. Some selected areas were also modeled with our multi-photo geometrically constrained image matching approach to demonstrate that the same accuracy and details can be achieved using either scanners or photogrammetry. The derived 3D model of the heritage is now the basis for further archaeological studies on the incision techniques and a deeper structural analysis on the monument. The challenges of the work stay in the acquisition, processing and integration of the multi-resolution data as well as their visualization.
文章报道了戈尔蒂纳(克里特岛)大铭文虚拟化的跨学科项目,用于3D文档,结构研究和物理复制目的。希腊文明最长的铭文文本(6米长,1.75米高,刻有约2-3毫米深的字母)及其周围的遗产区域(约30 x 30米)的数字化需要长时间的规划和专门采集系统的建设,以加快测量时间,每天限制在几个小时。主要采用多分辨率距离传感器,对高分辨率和低几何分辨率光滑程度较低区域的细节部分进行数字化处理。一些选定的区域也用我们的多照片几何约束图像匹配方法建模,以证明使用扫描仪或摄影测量都可以达到相同的精度和细节。该遗产的三维模型现在是进一步考古研究切割技术和对纪念碑进行更深层次结构分析的基础。该工作的挑战在于多分辨率数据的采集、处理和集成以及数据的可视化。