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Seafloor Habitat Mapping on the Oregon Continental Margin: A Spatially Nested GIS Approach to Mapping Scale, Mapping Methods, and Accuracy Quantification

机译:俄勒冈州大陆边缘的海底栖息地制图:一种空间嵌套的GIS方法,用于制图比例尺,制图方法和精度量化

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摘要

We implement a geographic information system (GIS) to map surficial geologic habitats (SGH) with varying scales at Nehalem Bank, Oregon, USA. Geologic interpretation was first used to produce a regional-scale SGH map of mega habitats. Local-scale algorithmic classification techniques were then implemented where data density and richness permitted the mapping of meso (10 m-1 km) macro scale (1-10 m) habitat features. We use a ranked-(data) density approach to assess the distribution and quality of input data for the regional SGH map. We then apply a virtual reference dataset and error matrix technique to assess the thematic accuracy of local-scale maps.
机译:我们在美国俄勒冈州的Nehalem银行实施了地理信息系统(GIS),以绘制不同比例的表层地质栖息地(SGH)。地质解释首先被用于绘制巨型生境的区域尺度SGH地图。然后实施局部尺度算法分类技术,其中数据密度和丰富度允许绘制中观(10 m-1 km)宏观尺度(1-10 m)栖息地特征的图。我们使用排名(数据)密度方法来评估区域SGH地图的输入数据的分布和质量。然后,我们应用虚拟参考数据集和误差矩阵技术来评估局部比例尺地图的主题准确性。

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