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Research on discrete points of electric field model for conflict detection and displacement

机译:冲突检测与排量的电场模型离散点研究

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Conflict detection and displacement are significant operators to maintain spatial relationship of map elements in cartography. At present, much attention has been paid to element division for local conflict detection and progressive displacement. By deeply observation, analysis and experiment, many models have been found good applicability for cartography, such as structure mechanics model, snake model, delaunay model, et al. But local conflict detection and progressive displacement still need more researches to achieve automatic cartographic generalization. In this paper, electric field model is proposed firstly to try conflict detection and displacement. Distribution of electric field is suit for conflict detection and displacement of map elements, since conflict occurs in local and changes with range. The main idea is to take conflict of road and building elements as that of points scattered from lines, and points represent particles with electric power. Conflict can be expressed by electric repulsion between particles. On the basis of electric field model, an algorithm and workflow is designed to verify the model effectiveness. The experiment concludes that the quantitative relationship of scale factor to discretization step and displacement amount is credible, and progressive displacement algorithm is effective for conflict detection and displacement.
机译:冲突检测和位移是重要的运营商,以维持制图中地图元素的空间关系。目前,众多关注局部冲突检测和逐步排量的元素司。通过深入观察,分析和实验,已经发现许多模型对制图良好适用性,例如结构力学模型,蛇模型,Delaunay Model等。但是,局部冲突检测和渐进式流离失所仍然需要更多的研究来实现自动制图泛化。本文首先提出了电场模型,以试述冲突检测和位移。电场的分布适用于地图元素的冲突检测和位移,因为在本地发生冲突并随着范围的变化发生冲突。主要思想是采取道路和建筑元素的冲突,因为从线路散射的点,点代表电力的粒子。冲突可以通过粒子之间的电力排斥来表达。在电场模型的基础上,算法和工作流程旨在验证模型效率。该实验得出结论,规模因子对离散化步骤和排量量的定量关系是可信的,并且逐步排量算法对于冲突检测和位移是有效的。

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