论文标题
基于物联网的紧急疏散系统
IoT-based Emergency Evacuation Systems
论文作者
论文摘要
火灾,地震,洪水,飓风,人满为患,甚至大流行病毒危害了人类的生命。因此,设计基础架构以应对可能的紧急情况已成为不断增长的需求。在处理必要的缓解和灾难风险管理时,从建筑物中撤离的安全撤离优先考虑。本论文涉及设计一个物联网系统,以提供安全,快速的疏散建议。基于IoT的疏散系统提供了最佳的疏散路径,可以根据运行时的感官数据进行连续更新,因此可以根据随着时间的推移而发展的访客乘员进行疏散指南。本论文做出了以下主要贡献:i)针对物联网建筑风格和模式的最新状态; ii)提出一组自适应的物联网模式,并评估其特定质量属性(容易耐受性,能耗和性能); iii)设计物联网基础架构并在实时和设计时间应用中测试其性能; iv)开发一种网络流量算法,该算法有助于最大程度地减少从灾难场景中撤离人们所需的时间; v)在紧急情况下对各种社会代理人及其互动进行建模,以相应地改善物联网系统; vi)通过使用经验和实际案例研究评估系统。
Fires, earthquakes, floods, hurricanes, overcrowding, or and even pandemic viruses endanger human lives. Hence, designing infrastructures to handle possible emergencies has become an ever-increasing need. The safe evacuation of occupants from the building takes precedence when dealing with the necessary mitigation and disaster risk management. This thesis deals with designing an IoT system to provide safe and quick evacuation suggestions. The IoT-based evacuation system provides optimal evacuation paths that can be continuously updated based on run-time sensory data, so evacuation guidelines can be adjusted according to visitors occupants that evolve over time. This thesis makes the following main contributions: i) Addressing an up to date state of the art class for IoT architectural styles and patterns; ii) Proposing a set of self-adaptive IoT patterns and assessing their specific quality attributes (fault-tolerance, energy consumption, and performance); iii) Designing an IoT infrastructure and testing its performance in both real-time and design-time applications; iv) Developing a network flow algorithm that facilitates minimizing the time necessary to evacuate people from a scene of a disaster; v) Modeling various social agents and their interactions during an emergency to improve the IoT system accordingly; vi) Evaluating the system by using empirical and real case studies.