利用并行计算的微观行人运动模型

Michal Varga, Miroslav Mintál
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引用次数: 3

摘要

提出了基于行人局部空间离散成单元的高平行行人微观运动模型。每个单元都从行人目标的梯度场和其他行人和障碍物的存在中获得一个值。这种计算可以独立地对每个单元进行,这使得并行化非常有效。行人向价格最优的小区迈出一步。文中详细描述了运动模型,给出了梯度场的构造,并对该模型的并行实现和串行实现进行了实验对比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microscopic pedestrian movement model utilizing parallel computations
Paper presents high parallel pedestrian microscopic movement model based on the pedestrian local space discretization into cells. Every cell gains a value computed from the gradient field of the pedestrian's target and presence of other pedestrians and obstacles. This evaluation can be done independently for every cell what makes the parallelization very effective. Pedestrian takes a step towards cell with best price. Paper describes the movement model in detail, outlines a construction of gradient fields and brings in the experiments comparing parallel and serial implementation of presented model.
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