Mapping and improving frequency, accuracy, and interpretation of land cover change: classifying coastal louisiana with 1990, 1993, 1996, and 1999 Landsat thematic mapper image data

G. Nelson, E. Ramsey, A. Rangoonwala
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Abstract

Landsat Thematic Mapper images and collateral data sources were used to classify the land cover of the Mermentau River Basin within the chenier coastal plain and the adjacent uplands of Louisiana, USA. Landcover classes followed that of the National Oceanic and Atmospheric Administration's Coastal Change Analysis Program; however, classification methods needed to be developed to meet these national standards. Our first classification was limited to the Mermentau River Basin (MRB) in southcentral Louisiana, and the years of 1990, 1993, and 1996. To overcome problems due to class spectral inseparable, spatial and spectra continuums, mixed landcovers, and abnormal transitions, we separated the coastal area into regions of commonality and applying masks to specific land mixtures. Over the three years and 14 landcover classes (aggregating the cultivated land and grassland, and water and floating vegetation classes), overall accuracies ranged from 82% to 90%. To enhance landcover change interpretation, three indicators were introduced as Location Stability, Residence stability, and Turnover. Implementing methods substantiated in the multiple date MRB classification, we spatially extended the classification to the entire Louisiana coast and temporally extended the original 1990, 1993, 1996 classifications to 1999 (Figure 1). We also advanced the operational functionality of the classification and increased the credibility of change detection results. Increased operational functionality that resulted in diminished user input was for the most part gained by implementing a classification logic based on forbidden transitions. The logic detected and corrected misclassifications and mostly alleviated the necessity of subregion separation prior to the classification. The new methods provided an improved ability for more timely detection and response to landcover impact.
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测绘和提高土地覆盖变化的频率、精度和解释:用1990年、1993年、1996年和1999年Landsat专题制图器图像数据对路易斯安那州沿海地区进行分类
利用Landsat Thematic Mapper图像和相关数据源对美国路易斯安那州chenier沿海平原和邻近高地Mermentau河流域的土地覆盖进行了分类。土地覆盖等级遵循国家海洋和大气管理局的海岸变化分析计划;但是,需要开发分类方法以满足这些国家标准。我们的第一次分类仅限于路易斯安那州中南部的Mermentau河流域(MRB),以及1990年、1993年和1996年。为了克服类光谱不可分割、空间和光谱连续、混合地表覆盖和异常过渡等问题,我们将沿海地区划分为共性区域,并对特定的陆地混合物应用掩膜。在3年的时间里,14个土地覆盖类别(包括耕地和草地,以及水和漂浮植被类别)的总体精度在82%到90%之间。为了加强土地覆盖变化的解释,引入了区位稳定性、居住稳定性和周转量三个指标。采用多日期MRB分类方法,我们在空间上将分类扩展到整个路易斯安那海岸,并在时间上将原来的1990、1993、1996年分类扩展到1999年(图1)。我们还提高了分类的操作功能,提高了变化检测结果的可信度。增加的操作功能减少了用户输入,这在很大程度上是通过实现基于禁止转换的分类逻辑实现的。该逻辑检测和纠正错误分类,并在很大程度上减轻了分类前分区域分离的必要性。新方法提高了更及时地检测和响应土地覆盖影响的能力。
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