基于人群模拟与分析框架的大规模集会应急疏散策略分析——以朝觐场景为例

Imran Mahmood, Muhammad Haris, H. Sarjoughian
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引用次数: 33

摘要

朝觐是世界上最大规模的穆斯林集会之一,每年来自世界各地的穆斯林聚集在麦加朝圣。如此大规模的集会面临着天灾人祸的巨大风险。在过去几年中,在进行不同的朝觐仪式时,特别是在卡巴节(Tawaf)期间,由于踩踏或混乱,发生了数千人伤亡。在这种灾难性的情况下,适当的疏散策略可以帮助解决问题并减少进一步的伤亡风险。然而,根据几个约束条件确定最佳行动方案是一个令人望而生畏的研究问题。建模和分析这种实时和空间显式复杂性的问题需要一个微观尺度的人群模拟和分析框架。这不仅使建模者能够在真实尺度上表达环境的空间维度和特征,而且为捕获复杂的人群行为提供了模态。在本文中,我们提出了一个基于agent的人群仿真与分析框架,该框架结合了Anylogic行人库的使用,并将Anylogic仿真环境与外部模块集成/互操作,以进行优化和分析。因此,为分析复杂情况(如紧急疏散策略)提供了一个运行时环境。所提议的框架的主要特点包括:(i)能够在实际尺度上对空间明确环境中的大量人群进行建模;㈡模拟复杂的人群行为,如紧急疏散;(iii)优化和分析模块与评估疏散策略的仿真运行时的互操作性。我们提出了一个朝觐场景的案例研究,作为识别和评估人群疏散最佳策略的概念验证和测试平台
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Analyzing Emergency Evacuation Strategies for Mass Gatherings using Crowd Simulation And Analysis framework: Hajj Scenario
Hajj is one of the largest mass gatherings where Muslims from all over the world gather in Makah each year for pilgrimage. A mass assembly of such scale bears a huge risk of disaster either natural or man-made. In the past few years, thousands of casualties have occurred while performing different Hajj rituals, especially during the Circumambulation of Kaba (Tawaf) due to stampede or chaos. During such calamitous situations, an appropriate evacuation strategy can help resolve the problem and mitigate further risk of causalities. It is however a daunting research problem to identify an optimal course of action based on several constraints. Modeling and analyzing such a problem of real-time and spatially explicit complexity requires a microscale crowd simulation and analysis framework. Which not only allows the modeler to express the spatial dimensions and features of the environment in real scale, but also provides modalities to capture complex crowd behaviors. In this paper, we propose an Agent-based Crowd Simulation & Analysis framework that incorporates the use of Anylogic Pedestrian library and integrates/interoperate Anylogic Simulation environment with the external modules for optimization and analysis. Hence provides a runtime environment for analyzing complex situations, e.g., emergency evacuation strategies. The key features of the proposed framework include: (i) Ability to model large crowd in a spatially explicit environment at real-scale; (ii) Simulation of complex crowd behavior such as emergency evacuation; (iii) Interoperability of optimization and analysis modules with simulation runtime for evaluating evacuation strategies. We present a case study of Hajj scenario as a proof of concept and a test bed for identifying and evaluating optimal strategies for crowd evacuation
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Session details: Paper Session 4 GPU and Hardware Acceleration Lightweight WebSIM Rendering Framework Based on Cloud-Baking Efficient Simulation of Nested Hollow Sphere Intersections: for Dynamically Nested Compartmental Models in Cell Biology Session details: Paper Session 3 Performance Modeling and Simulation Analyzing Emergency Evacuation Strategies for Mass Gatherings using Crowd Simulation And Analysis framework: Hajj Scenario
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