首页> 外文会议>Optics for arts, architecture, and archaeology IV >Remote Photonic Metrology in the conservation of Cultural Heritage
【24h】

Remote Photonic Metrology in the conservation of Cultural Heritage

机译:保护文化遗产的远程光子计量学

获取原文
获取原文并翻译 | 示例

摘要

Photonic technologies play a leading innovative role of research in the fields of Cultural Heritage (CH) conservation, preservation and digitisation. In particular photonic technologies have introduced a new indispensable era of research in the conservation of cultural artefacts expanding from decorative objects, paintings, sculptures, monuments to archaeological sites and including fields of application as diverse as materials characterisation to restoration practices and from defect topography to 3d artwork reconstruction. Thus the last two decades photonic technologies have emerged as unique answer or most competitive alternative into many long-term standing disputes in conservation and restoration of Cultural Heritage. Despite the impressive advances on the state-of-the-art ranging from custom-made system development to new methods and practises, photonic research and technological developments remain incoherently scattered and fragmented with a significant amount of duplication of work and misuse of resources. In this context, further progress should aim to capitalise on the so far achieved milestones in any of the diverse applications flourished in the field of CH. Embedding of experimental facilities and conclusions seems the only way to secure the progress beyond the existing state of the art and its false use. The solution to this embedment seems possible through the new computing environments. Cloud computing environment and remote laboratory access hold the missing research objective to bring the leading research together and integrate the achievements. The cloud environment would allow experts from museums, galleries, historical sites, art historians, conservators, scientists and technologists, conservation and technical laboratories and SMEs to interact their research, communicate their achievements and share data and resources. The main instrument of this integration is the creation of a common research platform termed here Virtual Laboratory allowing not only remote research, inspection and evaluation, but also providing the results to the members and the public with instant and simultaneous access to necessary information, knowledge and technologies. In this paper it is presented the concept and first results confirming the potential of implementing metrology techniques as remote digital laboratory facilities in artwork structural assessment. The method paves the way of the general objective to introduce remote photonic technologies in the sensitive field of Cultural Heritage.
机译:光子技术在文化遗产(CH)保护,保存和数字化领域中发挥着领先的创新研究作用。特别是,光子技术在保护文化文物方面开辟了新的必不可少的时代,从装饰物,绘画,雕塑,纪念碑到考古遗址,以及从材料表征到修复实践以及从缺陷地形到3d的各种应用领域艺术品重建。因此,在过去的二十年中,光子技术已成为文化遗产保护和恢复中许多长期存在的长期争议中的独特答案或最具竞争力的替代方案。尽管从定制的系统开发到新的方法和实践,最先进的技术取得了令人印象深刻的进步,但光子研究和技术发展仍然是不连贯的,零散的,而且有大量的重复工作和滥用资源。在这种情况下,进一步的进展应旨在利用CH领域中兴旺发达的各种应用中迄今已实现的里程碑。嵌入实验设施和结论似乎是确保进度超越现有技术水平及其错误使用的唯一途径。通过新的计算环境,似乎可以解决此嵌入问题。云计算环境和远程实验室访问是缺少的研究目标,无法将领先的研究聚集在一起并整合成果。云环境将使来自博物馆,画廊,历史遗址,艺术史学家,保护者,科学家和技术人员,保护和技术实验室以及中小型企业的专家能够相互交流研究成果,交流成果并共享数据和资源。集成的主要工具是创建一个称为虚拟实验室的通用研究平台,该平台不仅可以进行远程研究,检查和评估,还可以为成员和公众提供结果,并即时并同时访问必要的信息,知识和技术。技术。本文介绍了这一概念和初步结果,证实了将计量技术用作艺术品结构评估中的远程数字实验室设施的潜力。该方法为在文化遗产敏感领域引入远程光子技术铺平了总体目标的道路。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号