Stratigraphy from Topography I. Theoretical and Practical Considerations for the Application of the Harris Matrix for the GIS-based Spatio-temporal Archaeological Interpretation of Topographical Data

IF 0.3 Q2 Arts and Humanities
W. Neubauer, Christopher D Traxler, A. Bornik, Andreas Lenzhofer
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引用次数: 2

Abstract

Archaeological stratigraphy is usually associated with an archaeological excavation. We show that the principles of archaeological stratigraphy can be extended to the analysis of prospection data. Specifical-ly, we present a theoretical basis for archaeological stratigraphy with particular reference to the analysis of topographic data acquired from, e.g., airborne laser scans (ALS). Building on previous approaches to archaeological stratigraphy, we present an interval-based time model for constructing a stratigraphic sequence based on a combination of the spatial and temporal parameters of an archaeological stratification. Moving from an approach based on single points in time to a relative chronological structuring of a stratigraphic sequence, we postulate the use of an interval-based approach, based on Allen’s interval algebra. For this purpose, the existing software for the creation of a stratigraphic sequence (Harris Matrix) has been extended, which allows a relative chronological layout of the stratigraphic sequence in combination with an absolute chronological timeline. By linking this tool to a GIS, a comprehensible and digital creation of period and phase maps based on a spatio-temporal analysis of the underlying topographic data is enabled. The system we have developed provides a consistent visual representation, which means that a correct stratigraphic layout is maintained while the units of the stratigraphic sequence are aligned with the intervals of the time model.
基于地形的地层学ⅰ。哈里斯矩阵在基于gis的地形数据时空考古解释中的应用的理论与实践考虑
考古地层学通常与考古发掘有关。研究表明,考古地层学原理可以推广到找矿资料的分析中。具体来说,我们提出了考古地层学的理论基础,特别是参考地形数据的分析,例如机载激光扫描(ALS)。在以前的考古地层学方法的基础上,我们提出了一个基于间隔的时间模型,用于构建基于考古分层的空间和时间参数组合的地层序列。从基于单一时间点的方法转向地层层序的相对时间结构,我们假设使用基于Allen区间代数的基于区间的方法。为此,现有的创建地层层序的软件(Harris Matrix)得到了扩展,它允许地层层序的相对时间顺序布局与绝对时间顺序时间表相结合。通过将此工具与地理信息系统相连接,基于底层地形数据的时空分析,可以实现可理解的时期和阶段地图的数字化创建。我们开发的系统提供了一致的视觉表示,这意味着当地层层序单元与时间模型的间隔对齐时,保持了正确的地层布局。
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来源期刊
Archaeologia Austriaca
Archaeologia Austriaca ARCHAEOLOGY-
CiteScore
1.20
自引率
0.00%
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