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Enhancing accuracy and expressive power of range query answers over incomplete spatial databases via a novel reasoning approach

机译:通过新颖的推理方法提高不完整空间数据库上范围查询答案的准确性和表达能力

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摘要

Modern spatial database applications built on top of distributed and heterogeneous spatial information sources such as conventional spatial databases underlying Geographical Information Systems (GIS), spatial data files and spatial information acquired or inferred from the Web, suffer from data integration and topological consistency problems. This more-and-more conveys in incomplete information, which makes answering range queries over incomplete spatial databases a leading research challenge in spatial database systems research. A significant instance of this setting is represented by the application scenario in which the geometrical information on a sub-set of spatial database objects is incomplete whereas the spatial database still stores topological relations among these objects (e.g., containment relations). Focusing on the spatial database application scenario above, in this paper we propose and experimentally assess a novel technique for efficiently answering range queries over incomplete spatial databases via integrating geometrical information and topological reasoning. We also propose X-SQE (Spatial Query Engine for Incomplete Information), an innovative query engine implementing this technique. Our proposed technique results not only effective but also efficient against both synthetic and real-life spatial data sets, and it finally allows us to enhance the quality and the expressive power of retrieved answers by meaningfully taking advantages from the amenity of representing spatial database objects via both the geometrical and the topological level.
机译:建立在分布式和异构空间信息源之上的现代空间数据库应用程序(例如,基于地理信息系统(GIS)的常规空间数据库,空间数据文件和从Web获得或推断的空间信息)遭受数据集成和拓扑一致性问题的困扰。这越来越多地传达了不完整的信息,这使得对不完整的空间数据库的范围查询成为空间数据库系统研究中的主要研究挑战。该设置的重要实例由应用场景表示,其中关于空间数据库对象子集的几何信息不完整,而空间数据库仍存储这些对象之间的拓扑关系(例如,容纳关系)。针对上述空间数据库的应用场景,本文提出并实验评估了一种新技术,该技术可以通过整合几何信息和拓扑推理,有效地对不完整的空间数据库进行范围查询。我们还提出了X-SQE(不完整信息的空间查询引擎),这是一种实现此技术的创新查询引擎。我们提出的技术不仅对合成的和现实的空间数据集都产生了有效的结果,而且还有效,它最终使我们能够通过有意义地利用通过表示空间数据库对象的便利性来提高检索到的答案的质量和表达能力。无论是几何层次还是拓扑层次。

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