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Geographical risk analysis based path selection for automatic, speedy, and reliable evacuation guiding using evacuees'mobile devices

机译:基于地理风险分析的路径选择,用于自动,快速,可靠的疏散,使用伐木人的机器人引导

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摘要

It has been highly expected to achieve speedy and reliable evacuation guiding under large scale disasters. As for the speedy evacuation, an automatic evacuation guiding scheme has been proposed, which is a reactive approach based on implicit interactions among evacuees, their mobile devices, and networks. In this scheme, an evacuation route is given by the shortest path, which may not be safe. In this paper, we propose a speedy and reliable path selection based on the geographical risk map for the existing automatic evacuation guiding, which is a proactive approach that allows evacuees to evacuate speedily while avoiding encounters with blocked road segments as much as possible. First, the proposed scheme enumerates candidates of short paths from the evacuee's current location to the refuge. Then, it selects the most reliable one from the candidates by taking into account road blockage probabilities, each of which is an estimated probability that the corresponding road is blocked under a certain disaster. Through simulation experiments, we show that the proposed scheme can improve the safety of evacuation in terms of the number of encounters with blocked road segments while keeping both the average and maximum evacuation times unchanged, compared with the shortest path selection. We further demonstrate how the proactive function, i.e., geographical risk analysis, and the reactive function, i.e., information sharing, contribute to the system performance.
机译:预计在大规模灾害下实现了迅速和可靠的疏散迅速和可靠的疏散。至于迅速的疏散,已经提出了一种自动疏散指导方案,这是基于撤离者,移动设备和网络之间隐含相互作用的反应方法。在该方案中,疏散路线由最短路径给出,这可能不安全。在本文中,我们提出了一种基于现有的自动疏散引导的地理风险图的快速和可靠的路径选择,这是一种积极的方法,允许疏散速度迅速撤离,同时尽可能多地避免堵塞的道路段。首先,拟议计划枚举从泄露的当前地点的短路的候选人到避难所。然后,它通过考虑道路阻塞概率来选择来自候选者中最可靠的一个,每个概率是相应的道路在某些灾难下阻止的估计概率。通过仿真实验,我们表明,该方案可以在堵塞的道路段的遇到数量方面提高疏散的安全性,同时保持平均和最大的疏散时间不变,与最短的路径选择相比。我们进一步展示了主动函数,即地理风险分析以及反应功能,即信息共享,有助于系统性能。

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