FAIR data for prehistoric mining archaeology.

IF 1.6 Q2 INFORMATION SCIENCE & LIBRARY SCIENCE International Journal on Digital Libraries Pub Date : 2021-01-01 Epub Date: 2020-01-23 DOI:10.1007/s00799-020-00282-8
Gerald Hiebel, Gert Goldenberg, Caroline Grutsch, Klaus Hanke, Markus Staudt
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引用次数: 5

Abstract

This paper presents an approach how to create FAIR data for prehistoric mining archaeology, based on the CIDOC CRM ontology and semantic web standards. The interdisciplinary Research Centre HiMAT (History of mining activities in the Tyrol and adjacent areas, University of Innsbruck) investigates mining history from prehistoric to modern times with an interdisciplinary approach. One of the projects carried out at the research centre is the multinational DACH project "Prehistoric copper production in the eastern and central Alps". For a specific geographical region of the project, the data transformation to open and re-usable data is investigated in a separate Open Research Data pilot project. The methodological approach will use the FAIR principles to make data Findable, Accessible, Interoperable and Re-usable. Every archaeological investigation in Austria has to be documented according to the requirements of the Austrian Federal Monuments Office. This documentation is deposited in the CERN-based EU supported research data repository ZENODO. For each deposited file, metadata are created through the application of the conceptual metadata schema CIDOC CRM, an ISO standard for Cultural Heritage Information, which was adopted by ARIADNE, the European Union Research Infrastructure for archaeological resources. Concepts specific to mining archaeology research are organized with the DARIAH Back Bone Thesaurus, a model for sustainable interoperable thesauri maintenance, developed in the European Union Digital Research Infrastructure for the Arts and Humanities. Metadata are created through the extraction of information from the documentation and the transformation to a knowledge graph using semantic web standards. To facilitate usage, graph data are exported to hierarchical and tabular formats representing sites and objects with their geographic locations, temporal and typological assignments and links to the research activities and documents. Metadata are deposited together with the documentation into the repository.

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史前采矿考古的FAIR数据。
本文提出了一种基于cdoc CRM本体和语义web标准的史前采矿考古FAIR数据创建方法。跨学科研究中心HiMAT(蒂罗尔和邻近地区的采矿活动历史,因斯布鲁克大学)用跨学科的方法调查从史前到现代的采矿历史。在研究中心进行的项目之一是跨国DACH项目“阿尔卑斯山东部和中部的史前铜生产”。对于项目的特定地理区域,在一个单独的开放研究数据试点项目中调查了向开放和可重用数据的数据转换。方法方法将使用FAIR原则使数据可查找、可访问、可互操作和可重用。奥地利的每一次考古调查都必须按照奥地利联邦古迹办事处的要求记录在案。该文档存储在基于cern的欧盟支持的研究数据存储库ZENODO中。对于每个存放的文件,通过应用概念元数据模式CIDOC CRM创建元数据,这是一种文化遗产信息的ISO标准,已被ARIADNE(欧盟考古资源研究基础设施)采用。具体到采矿考古研究的概念是与DARIAH脊骨同义词典组织的,DARIAH脊骨同义词典是可持续的可互操作的同义词典维护模型,在欧盟为艺术和人文学科开发的数字研究基础设施。元数据是通过从文档中提取信息并使用语义web标准转换为知识图来创建的。为了方便使用,图形数据被导出为分层和表格格式,表示地点和对象及其地理位置、时间和类型分配以及与研究活动和文件的链接。元数据与文档一起存储到存储库中。
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来源期刊
CiteScore
4.30
自引率
6.70%
发文量
20
期刊介绍: The International Journal on Digital Libraries (IJDL) examines the theory and practice of acquisition definition organization management preservation and dissemination of digital information via global networking. It covers all aspects of digital libraries (DLs) from large-scale heterogeneous data and information management & access to linking and connectivity to security privacy and policies to its application use and evaluation.The scope of IJDL includes but is not limited to: The FAIR principle and the digital libraries infrastructure Findable: Information access and retrieval; semantic search; data and information exploration; information navigation; smart indexing and searching; resource discovery Accessible: visualization and digital collections; user interfaces; interfaces for handicapped users; HCI and UX in DLs; Security and privacy in DLs; multimodal access Interoperable: metadata (definition management curation integration); syntactic and semantic interoperability; linked data Reusable: reproducibility; Open Science; sustainability profitability repeatability of research results; confidentiality and privacy issues in DLs Digital Library Architectures including heterogeneous and dynamic data management; data and repositories Acquisition of digital information: authoring environments for digital objects; digitization of traditional content Digital Archiving and Preservation Digital Preservation and curation Digital archiving Web Archiving Archiving and preservation Strategies AI for Digital Libraries Machine Learning for DLs Data Mining in DLs NLP for DLs Applications of Digital Libraries Digital Humanities Open Data and their reuse Scholarly DLs (incl. bibliometrics altmetrics) Epigraphy and Paleography Digital Museums Future trends in Digital Libraries Definition of DLs in a ubiquitous digital library world Datafication of digital collections Interaction and user experience (UX) in DLs Information visualization Collection understanding Privacy and security Multimodal user interfaces Accessibility (or "Access for users with disabilities") UX studies
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