Using unsupervised classification techniques and the hypsometric index to identify anthropogenic landscapes throughout American Samoa

IF 0.4 4区 历史学 Q3 ANTHROPOLOGY Journal of the Polynesian Society Pub Date : 2018-03-31 DOI:10.15286/JPS.127.1.55-72
Stephanie S. Day
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引用次数: 2

Abstract

Aerial LiDAR data offers a valuable tool in locating ancient anthropogenic landscapes around the world. This technology is particularly ideal in places where thick vegetation obscures the ground surface, reducing the utility of satellite imagery. On the islands of American Samoa, many interior anthropogenic landscapes remain unsurveyed, largely because the terrain makes it difficult and there is only general knowledge of where the anthropogenic modification may have existed. Aerial LiDAR flown in 2012 is proving to be a valuable tool in locating these prehistoric anthropogenic areas, yet improvements can be made on the methodology. This paper provides an unsupervised classification method to identify anthropogenic landscapes based on slope and hypsometric index: a topographic measure of roughness. Areas of American Samoa with known anthropogenic modifications were used to develop the classification techniques, which were then extended to areas where anthropogenic landscapes are undocumented and unexplored. The findings presented here suggest that interior anthropogenic patterns may be strongly dependent on island topography.
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利用无监督分类技术和低密度指数识别美属萨摩亚的人为景观
航空激光雷达数据为定位世界各地古代人为景观提供了有价值的工具。这项技术尤其适用于浓密植被遮挡地面、降低卫星图像效用的地方。在美属萨摩亚的岛屿上,许多内部人为景观仍然没有调查,主要是因为地形使调查变得困难,而且对可能存在人为改变的地方只有一般的了解。2012年飞行的空中激光雷达被证明是定位这些史前人类活动区域的宝贵工具,但可以在方法上进行改进。本文提出了一种基于坡度和地形粗糙度指数的无监督分类方法来识别人为景观。利用美属萨摩亚已知有人为改变的地区发展分类技术,然后将其扩展到没有记录和未探索的人为景观地区。这里提出的研究结果表明,内部人为模式可能强烈依赖于岛屿地形。
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CiteScore
1.50
自引率
16.70%
发文量
5
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