Design and Research of Virtual Simulation Experiment of Optimal Fire Escape Strategy Based on Internet of Things

Guiling Sun, Sirui Wang, Yi Gao, Hai Wang
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Abstract

With the urgent demand for Internet of Things professionals, colleges and universities are faced with the challenge of training integrated talents of Internet of Things. Combined with the social background of high incidence of fire and difficulty in escape of high-rise buildings, we designed the simulation experiment of optimal escape route selection for fire distribution prediction based on the intelligent fire virtual simulation teaching platform. The simulation experiment takes Unity3D as the tool, comprehensively utilizes computer simulation technology and big data technology of Internet of Things to establish mathematical models of fire data in various situations, and dynamically simulates the scope, intensity and spread trend of different fires. In addition, according to different fire situations, combined with the overall structure of the building and multi-sensor data, based on the optimal path planning principle, the system plans the optimal escape route for personnel in case of fire, so as to guide students to conduct fire escape drills based on different real scene simulation. The teaching system takes the three-layer structure of the Internet of Things as the main line and adopts the "bottom-up" teaching concept to enable students to master the theoretical knowledge and key technologies of the Internet of Things. By completing the simulation experiment designed by us, students should be able to solve practical problems by comprehensively applying Internet of Things engineering technology. The simulation experiment has been put into practical teaching, which has received positive response from students and achieved good teaching effect.
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基于物联网的最优火灾逃生策略虚拟仿真实验设计与研究
随着对物联网专业人才的迫切需求,高校面临着培养物联网综合型人才的挑战。结合高层建筑火灾高发、逃生难的社会背景,设计了基于智能火灾虚拟仿真教学平台的火灾分布预测的最优逃生路线选择仿真实验。仿真实验以Unity3D为工具,综合利用计算机仿真技术和物联网大数据技术,建立各种情况下火灾数据的数学模型,动态模拟不同火灾的范围、强度和蔓延趋势。此外,根据不同的火灾情况,结合建筑物的整体结构和多传感器数据,基于最优路径规划原则,规划出发生火灾时人员的最优逃生路线,从而指导学生进行基于不同真实场景模拟的火灾逃生演练。教学体系以物联网的三层结构为主线,采用“自下而上”的教学理念,使学生掌握物联网的理论知识和关键技术。通过完成我们设计的仿真实验,使学生能够综合运用物联网工程技术解决实际问题。将仿真实验投入到实际教学中,得到了学生的积极响应,取得了良好的教学效果。
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