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Robust design optimization for egressing pedestrians in unknown environments

机译:针对未知环境中行人的稳健设计优化

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In this paper, we deal with a group variable in size of pedestrians moving in a unknown confined environment and searching for an exit. Pedestrian dynamics are simulated by means of a recently introduced microscopic (agent-based) model, characterized by an exploration phase and an egress phase. First, we study the model to reveal the role of its main parameters and its qualitative properties. Second, we tackle a robust optimization problem by means of the Particle Swarm Optimization method, aiming at reducing the time-to-target by adding in the walking area multiple obstacles optimally placed and shaped. Robustness is sought against the number of people in the group, which is an uncertain quantity described by a random variable with given probability density distribution. (C) 2019 Elsevier Inc. All rights reserved.
机译:在本文中,我们处理了在未知密闭环境中移动并寻找出口的行人大小的组变量。行人动力学是通过最近引入的微观(基于代理)模型来模拟的,其特征在于探索阶段和出口阶段。首先,我们研究该模型以揭示其主要参数的作用及其定性性质。其次,我们通过粒子群优化方法解决了鲁棒的优化问题,旨在通过在步行区域中添加多个最佳放置和成形的障碍物来减少目标时间。针对组中的人数寻求鲁棒性,这是由具有给定概率密度分布的随机变量描述的不确定量。 (C)2019 Elsevier Inc.保留所有权利。

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