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A PageRank based predictive model for the estimation of the archaeological potential of an urban area

机译:基于PageRank的预测模型,用于估计市区的考古潜力

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We present the analysis of multi-faceted, GIS managed data for determining the archaeological potential, i.e. a measure of the possibility that a more or less significant archaeological stratification is preserved. We used a sizable number of datasets, in order to consider the problem of estimation of archaeological potential in all of its aspects: archaeological data, building archaeological data, historical data, toponymic data, geomorphological data. As the identification of relations among finds is a key issue for the data mining in archaeological interpretation process, we applied a modified version of the PageRank model, because the criteria for assigning importance to web pages by search engines are similar and based on relations, also. The procedure included a categorization archaeological data, the assignment of initial values of potential to the available data through an automatic procedure, the creation of geomorpho-logical facies maps, the definition of functional areas (i.e. the levels of spatial and functional organization: urban, suburban and rural areas), and the application of the PageRank based algorithm. The model has been applied on the urban area of Pisa, and tested through the data of 14 new cores. The map of archaeological potential consists of the composition of the 7 layers, one for each archaeological period under consideration: Protohistory, Etruscan period, Roman period, Late Roman period, Early Medieval period, Late Medieval period, Modern Age, Contemporary Age. The results, including the archaeological potential map, are to be considered as the first steps towards an automatic, formally definable, and repeatable, approach to the computation of archaeological potential.
机译:我们提出了对由GIS管理的多方面数据的分析,以确定考古潜力,即衡量保留或多或少重要考古分层的可能性的一种措施。为了考虑考古潜力在各个方面的问题,我们使用了大量的数据集:考古数据,建筑考古数据,历史数据,地名数据,地貌数据。由于发现之间关系的确定是考古解释过程中数据挖掘的关键问题,因此我们应用了PageRank模型的修改版本,因为搜索引擎对网页的重要性分配标准是相似的,并且基于关系, 。该程序包括分类考古数据,通过自动程序将潜在的初始值分配给可用数据,创建地貌学相图,功能区域的定义(即空间和功能组织的级别:城市,郊区和农村地区),以及基于PageRank的算法的应用。该模型已应用于比萨市区,并通过14个新岩心的数据进行了测试。考古潜力图由7层组成,每个考古时期都在考虑其中:原始历史,伊特鲁里亚时期,罗马时期,罗马晚期,中世纪早期,中世纪晚期,现代,当代。结果,包括考古潜力图,应被视为迈向自动,正式可定义和可重复的考古潜力计算方法的第一步。

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