Order in space: a general formalism for spatial reasoning

B. El-Geresy, A. Abdelmoty
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引用次数: 20

Abstract

We propose a general approach for reasoning in space. The approach is composed of a set of two general constraints to govern the spatial relationships between objects in space, and two rules to propagate relationships between those objects. The approach is based on a uniform representation of the topology of the space as a connected set of components using a structure called adjacency matrix which can capture the topology of objects of different complexity in any space dimension. The relationships between objects are represented by the intersection of the space components. The approach is also shown to be applicable to reasoning in the temporal domain and is used to explain the conceptual neighbourhood phenomenon related to the reasoning process. A major advantage of the method is that reasoning between objects of any complexity can be achieved in a defined limited number of steps. Hence, the incorporation of spatial reasoning mechanisms in spatial information systems becomes possible.
空间秩序:空间推理的一般形式
我们提出了一种空间推理的一般方法。该方法由一组用于控制空间中对象之间空间关系的两个一般约束和用于传播这些对象之间关系的两个规则组成。该方法基于空间拓扑的统一表示,使用一种称为邻接矩阵的结构,该结构可以捕获任何空间维度中不同复杂性对象的拓扑。对象之间的关系由空间分量的交点表示。该方法也被证明适用于时域推理,并用于解释与推理过程相关的概念邻域现象。该方法的一个主要优点是,任何复杂的对象之间的推理都可以在限定的有限步骤中完成。因此,在空间信息系统中加入空间推理机制成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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