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Modeling and analysis of subway fire emergency response: An empirical study

机译:地铁火灾应急响应的建模与分析:一项实证研究

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摘要

Modeling and analysis of a subway fire emergency response processes are extremely important in metro operation. In this study, a Petri net based approach is proposed to model and analyze the time and resource issues of subway fire emergency response processes. More specifically, the formal specification of subway fire emergency response process is first defined and a real subway fire response process is given to validate our methodologies. Next, resource conflict detection methods along with corresponding algorithms are proposed to detect potential resource conflicts. In addition, a priority criterion which constitutes of key-task priority strategy and waiting-short priority strategy is proposed to resolve the detected resource conflicts and optimize the whole process execution time. By experiment comparison, it is proved that our resolution strategies could effectively resolve resource conflicts as well as achieving high time performance. The proposed approach can be effectively used to simulate and train an emergency response plan to detect potential conflicts in time, sequence, and resources, before its real application. In this way, the reliability and validity of emergency response plan can be improved greatly. (C) 2016 Published by Elsevier Ltd.
机译:地铁火灾应急响应过程的建模和分析在地铁运营中非常重要。在这项研究中,提出了一种基于Petri网的方法来对地铁火灾应急过程的时间和资源问题进行建模和分析。更具体地说,首先定义了地铁火灾应急响应过程的正式规范,并给出了实际的地铁火灾应急响应过程以验证我们的方法。接下来,提出了资源冲突检测方法以及相应的算法来检测潜在的资源冲突。此外,提出了由关键任务优先级策略和等待短优先级策略组成的优先级准则,以解决检测到的资源冲突并优化整个过程的执行时间。通过实验比较,证明了我们的解决方案可以有效解决资源冲突并达到较高的时间性能。所提出的方法可以有效地用于模拟和训练应急计划,以在实际应用之前检测时间,顺序和资源方面的潜在冲突。这样可以大大提高应急预案的可靠性和有效性。 (C)2016由Elsevier Ltd.出版

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