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Managing Spatial Uncertainty in Remotely Sensed Data

机译:管理遥感数据中的空间不确定性

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摘要

The level of spatial uncertainty in geographical information systems (GIS) products is conditional on a number of operations on the spatial database prior to final output. Although stochastic and deterministic models have been used to predict the levels of uncertainty in digital map products through GIS operations such as overlay and buffering, the extent to which each operation contributes to overall product uncertainty is neither well known nor understood. An alternative approach is to examine the level of spatial uncertainty in the output product and then to improve the accuracy of this output by applying a rule-based model. In this paper, a conceptual rule-based model is proposed to effectively manage spatial uncertainty by examining the interrelationships between and within polygons resulting from the overlay of multiple independent human interpreter realisations of a satellite image. In a previous paper by Allan (1999), a method was proposed to extract information about these polygons from the overlay of these realisations for inclusion in the database and an approach was suggested in handling the resultant uncertainty polygons. Further work has seen the development of structural knowledge (rules) and procedural knowledge (operators) for managing these uncertainty polygons based on their likelihood of belonging to a particular thematic class. The adoption of such an approach is based on the semantic, geometric and spatial relations within and among uncertainty polygons generated from these realisations.
机译:地理信息系统(GIS)产品中的空间不确定性水平取决于最终输出之前对空间数据库进行的大量操作。尽管已使用随机和确定性模型通过GIS操作(例如叠加和缓冲)来预测数字地图产品中的不确定性水平,但人们对每个操作对整体产品不确定性的贡献程度尚不为人所知。一种替代方法是检查输出产品中空间不确定性的水平,然后通过应用基于规则的模型来提高此输出的准确性。在本文中,提出了一个基于规则的概念模型,通过检查由卫星图像的多个独立人类解释器实现叠加而产生的多边形之间和之内的相互关系,来有效地管理空间不确定性。在Allan(1999)的先前论文中,提出了一种从这些实现的叠加中提取有关这些多边形的信息以包含在数据库中的方法,并提出了一种处理所得不确定性多边形的方法。进一步的工作已经看到了结构性知识(规则)和过程性知识(运算符)的发展,用于根据不确定性多边形属于特定主题类别的可能性来管理这些不确定性多边形。这种方法的采用是基于从这些实现中产生的不确定多边形之内和之中的语义,几何和空间关系。

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