从开放获取的多光谱图像中识别考古遗址:云计算在伊拉克库尔德斯坦北部的应用

IF 2.1 3区 地球科学 0 ARCHAEOLOGY Archaeological Prospection Pub Date : 2022-09-30 DOI:10.1002/arp.1874
Riccardo Valente, Eleonora Maset, Marco Iamoni
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引用次数: 1

摘要

本文介绍了作为“亚洲考古项目”的一部分,在伊拉克库尔德斯坦的纳夫库尔平原进行的考古调查的结果。该调查是使用通过谷歌地球引擎访问的遥感产品进行的,谷歌地球引擎是一种大规模的云计算服务,科学界可以免费使用,可以处理遥感大数据。采用多时相方法产生的成果在考古研究中尤其成功,因为它可以最大限度地提高考古遗址的可见性,提高其探测能力。使用和处理了陆地卫星5号、陆地卫星7号和哨兵2号收集的多光谱图像,测试了它们在美索不达米亚北部研究密集地区寻找未知古代定居点的实用性。在已经调查的有限面积(<100平方公里)的区域内发现了17个新地点,显示了这种方法的潜力。还介绍和讨论了云计算在近东考古方面的优势以及调查结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Archaeological site identification from open access multispectral imagery: Cloud computing applications in Northern Kurdistan (Iraq)

This paper presents the results of an archaeological survey carried out in the Navkur Plain, Iraqi Kurdistan, as part of the ‘Asingeran Archaeological Project’. The survey was prepared using remote sensing products accessed via Google Earth Engine, a large-scale cloud computing service freely available to the scientific community that allows processing remote sensing big data. Outputs generated with a multitemporal approach are particularly successful for archaeological research, because it is possible to maximize the visibility of archaeological sites, improving their detection. Multispectral imagery from Landsat 5, Landsat 7 and Sentinel-2 collections were used and processed, testing their utility for finding unknown ancient settlements in the densely studied area of Northern Mesopotamia. Seventeen new sites were discovered in an already surveyed area of limited size (<100 km2), showing the potentialities of this method. The advantages of cloud computing for Near Eastern Archaeology and the results of the survey are also presented and discussed.

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来源期刊
Archaeological Prospection
Archaeological Prospection 地学-地球科学综合
CiteScore
3.90
自引率
11.10%
发文量
31
审稿时长
>12 weeks
期刊介绍: The scope of the Journal will be international, covering urban, rural and marine environments and the full range of underlying geology. The Journal will contain articles relating to the use of a wide range of propecting techniques, including remote sensing (airborne and satellite), geophysical (e.g. resistivity, magnetometry) and geochemical (e.g. organic markers, soil phosphate). Reports and field evaluations of new techniques will be welcomed. Contributions will be encouraged on the application of relevant software, including G.I.S. analysis, to the data derived from prospection techniques and cartographic analysis of early maps. Reports on integrated site evaluations and follow-up site investigations will be particularly encouraged. The Journal will welcome contributions, in the form of short (field) reports, on the application of prospection techniques in support of comprehensive land-use studies. The Journal will, as appropriate, contain book reviews, conference and meeting reviews, and software evaluation. All papers will be subjected to peer review.
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