An Effect of Sharing Damaged Road Information via Heterogeneous DTN on Evacuation

Yudai Yahara, Arata Kato, M. Takai, S. Ishihara
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Abstract

Sharing the information on damaged roads is a critical matter in disaster evacuation. We aim to develop a heterogeneous DTN based-disaster information sharing system, which uses both short-range wideband media (e.g., Wi-Fi) and long-range narrowband media (e.g., LoRa) to share disaster information even if communication infrastructures are damaged. In the system, evacuees carry a Wi-Fi mobile device, and fixed relay nodes and devices at disaster headquarters are equipped with Wi-Fi and LoRa. We investigated the influence of the DTN on evacuees’ behavior by using the cellular automaton-based mobility and communication simulation model. The results show that “leaving behind phenomena”, in which evacuees who hold the damaged road information (early comers) leave the damaged road before evacuees who have not obtained the damaged road information (latecomers) come to the vicinity of the damaged road occur. We also derived a strategy for the effective placement of fixed relay nodes to avoid leaving behind phenomena based on the simulation results and confirmed the strategy’s effectiveness.
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基于异构DTN的受损道路信息共享对疏散的影响
在灾害疏散中,共享受损道路的信息是至关重要的。我们的目标是开发一种基于异构DTN的灾害信息共享系统,即使通信基础设施遭到破坏,也可以同时使用短距离宽带媒体(如Wi-Fi)和远距离窄带媒体(如LoRa)共享灾害信息。在该系统中,疏散人员携带Wi-Fi移动设备,灾害总部的固定中继节点和设备配备Wi-Fi和LoRa。我们利用基于元胞自动机的移动和通信仿真模型研究了DTN对疏散人员行为的影响。结果表明,持有受损道路信息的疏散人员(先到者)在未获得受损道路信息的疏散人员(后到者)到达受损道路附近之前已经离开受损道路,出现了“离开现象”。在仿真结果的基础上,推导出了避免遗留现象的固定中继节点的有效放置策略,并验证了该策略的有效性。
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