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Thermographic Quantification for Archaeological Prospection at Picuris Pueblo, New Mexico

机译:新墨西哥州Picuris Pueblo考古勘探的热成像定量

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摘要

This paper contributes to advancing thermal remote sensing for archaeological research. It proposes a new quantitative analysis of thermal imagery for subsurface feature prospection. Modern research trends and existing thermal remote sensing methods in archaeology are examined. Expanding on these methods, this study explores a new thermal imagery processing workflow with spatiotemporal variables extracted from a time series of thermal orthophotos. This proposed thermographic quantification enhances the thermal signature of subtle subsurface features on site, allowing undocumented structural features to be identified. This workflow is applied in a case study at Picuris Pueblo, New Mexico. Multi-temporal thermal signatures are processed using an original image differencing method. Using known subsurface features as training data, the thermal signatures of uninvestigated areas are classified to identify probable subsurface architectural features. The case study demonstrates the efficacy of the proposed thermal imagery processing method for subsurface feature detection and archaeological prospection. This method provides a nondestructive approach to studying Picuris Pueblo and similar occupation sites across archaeological landscapes, allowing contemporary research questions to be addressed.
机译:本文为促进考古学的热遥感发展做出了贡献。提出了一种用于地下特征勘探的热成像定量分析方法。考察了考古学的现代研究趋势和现有的热遥感方法。在这些方法的基础上,本研究探索了一种新的热图像处理工作流程,其中包含从热正射影像的时间序列中提取的时空变量。这项拟议的热成像定量技术增强了现场细微的地下特征的热特征,从而可以识别未记录的结构特征。此工作流程在新墨西哥州Picuris Pueblo的案例研究中得到了应用。使用原始图像差分方法处理多时间热签名。使用已知的地下特征作为训练数据,对未调查区域的热特征进行分类,以识别可能的地下建筑特征。案例研究证明了所提出的热成像处理方法对于地下特征检测和考古勘探的功效。这种方法为研究Picuris Pueblo和整个考古景观中的类似占领点提供了一种非破坏性的方法,从而可以解决当前的研究问题。

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