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OPTIMAL PEDESTRIAN PATH PLANNING IN EVACUATION SCENARIO

机译:疏散场景中的最佳行人路径规划

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摘要

Simulation of evacuation plans is a relatively complex problem. It is necessary to simulate a number of separate processes which interact in the result. Namely, they are pedestrian-pedestrian interactions, pedestrian-static object (e.g. wall) interactions and pedestrian-environment (fire, smoke, etc.) interactions. In this case, the evacuation simulation is controled on the microscopic level. Microscopic level considers each individual separately and pedestrian is planning his/her path to the exit with regard to the above-mentioned interactions. In this article we focus on path planning during evacuation and describe algorithms applied in this area. At the end we propose a method of the space evaluation with linear time complexity and planned path compared with commercial software tools.
机译:疏散计划的模拟是一个相对复杂的问题。有必要模拟在结果中相互作用的多个独立过程。即,它们是行人与人之间的交互,行人与静态物体(例如墙)的交互以及行人与环境(火,烟等)的交互。在这种情况下,疏散模拟在微观层面上得到控制。微观层面会分别考虑每个人,而行人正在针对上述互动计划自己的出口路径。在本文中,我们着重于疏散期间的路径规划,并介绍了在该领域中应用的算法。最后,我们提出了一种与商用软件工具相比具有线性时间复杂度和计划路径的空间评估方法。

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