室内有障碍物的行人疏散模拟

Hao Yue, Xu Zhang, C. Shao, Qi Li
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引用次数: 0

摘要

本文提出了一种基于改进动态参数模型(DPM)的室内行人疏散仿真方法。为了减少障碍物布局不对称造成的疏散不平衡,引入了一种特殊的技术来计算房间内任意一个基站到出口的最短估计距离,确定了两个基本的动态参数:方向参数和空参数。通过考虑障碍物周围行人堵塞对疏散路径选择的影响,将实际距离和假想距离合并为最短估计距离。从初始化地点固定和初始化地点不固定两个方面对不同障碍物布局下的单出口和多出口行人疏散流进行了仿真。实验结果表明,改进后的模型可以有效地降低疏散不平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of pedestrian evacuation from room with internal obstacles
A simulation of pedestrian evacuation from room with internal obstacles is presented based on an improved Dynamic Parameter Model (DPM) in the paper. In order to reduce evacuation imbalance caused by the asymmetry of obstacles layout, a special technology is introduced to compute the shortest estimated distance from anyone cell site to exits in room, which determines two basic dynamic parameter: direction-parameter and empty-parameter. Actual and imaginary distances are merged into the shortest estimated distance through considering the effects of pedestrian jam around obstacles on evacuation path selection. The pedestrian evacuation flows with single exit and multi-exit are simulated under different obstacles layouts from two aspects: with fixed and unfixed initialization site. It is observed that improved model can effectively reduce evacuation imbalance.
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