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Outline of a Formal Theory of Processes and Events, and Why GIScience Needs One

机译:过程和事件的形式化理论的概述,以及GIScience为什么需要一个

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It has often been noted that traditional GIScience, with its focus on data-modelling functions such as the input, storage, retrieval, organisation, manipulation, and presentation of data, cannot readily accommodate the process-modelling functions such as explanation, prediction, and simulation which it is increasingly acknowledged should form an essential element of the GI scientist's toolkit. Although there are doubtless many different reasons for this seeming incompatibility, this paper singles out for consideration the different views of time presupposed by the two kinds of function: on the one hand, the 'frozen' historical time required by data modelling, and on the other, the 'fluid' experiential time required by process modelling. Whereas the former places an emphasis on events as discrete completed wholes, the latter is concerned with on-going continuous processes as they evolve from moment to moment. In order to reconcile the data-modelling and process-modelling requirements of GIScience, therefore, a formal theory of processes and events is developed, within which their fundamental properties can be made explicit independently of any specific implementation context, and their relationships systematically investigated.
机译:人们经常注意到,传统的GIS科学专注于数据建模功能,例如数据的输入,存储,检索,组织,操纵和表示,但不能轻易地适应过程建模功能,例如解释,预测和预测。人们越来越认可的模拟技术应该成为GI科学家工具包的重要组成部分。尽管造成这种似乎不兼容的原因无疑有很多不同的原因,但本文还是考虑了两种功能所预设的时间的不同观点:一方面是数据建模所需的“冻结”历史时间,另一方面是数据建模所需要的“冻结”历史时间。其他是过程建模所需的“流体”体验时间。前者强调事件是离散的完整整体,而后者则关注不断发展的连续过程。因此,为了协调GIScience的数据建模和流程建模要求,开发了一种流程和事件的形式化理论,在其中可以独立于任何特定的实现上下文来明确其基本属性,并系统地研究它们之间的关系。

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