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首页> 外文期刊>Promet-traffic & transportation >DYNAMIC BAYESIAN NETWORK-BASED ESCAPE PROBABILITY ESTIMATION FOR COACH FIRE ACCIDENTS
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DYNAMIC BAYESIAN NETWORK-BASED ESCAPE PROBABILITY ESTIMATION FOR COACH FIRE ACCIDENTS

机译:教练火灾事故的动态贝叶斯网络的逃脱概率估计

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摘要

Coach emergency escape research is an effective measure to reduce casualties under serious vehicle fire accidents. A novel experiment method employing a wireless transducer was implemented and the head rotation speed, rotation moment and rotation duration were collected as the input variables for the classification and regression tree (CART) model. Based on this model, the classification result explicitly pointed out that the exit searching efficiency was evolving. By ignoring the last three unimportant factors from the Analytic Hierarchy Process (AHP), the ultimate Dynamic Bayesian Network (DBN) was built with the temporal part of the CART output and the time-independent part of the vehicle characteristics. Simulation showed that the most efficient exit searching period is the middle escape stage, which is 10 seconds after the emergency signal is triggered, and the escape probability clearly increases with the efficient exit searching. Furthermore, receiving emergency escape training contributes to a significant escape probability improvement of more than 10%. Compared with different failure modes, the emergency hammer layout and door reliability have a more significant influence on the escape probability improvement than aisle condition. Based on the simulation results, the escape probability will significantly drop below 0.55 if the emergency hammers, door, and aisle are all in a failure state.
机译:教练紧急逃生研究是减少严重车辆火灾事故下伤亡人员的有效措施。采用无线换能器的新型实验方法实现,并将头部转速,旋转力矩和旋转持续时间作为分类和回归树(推车)模型的输入变量收集。基于此模型,分类结果明确指出,出口搜索效率正在不断发展。通过忽略来自分析层次处理(AHP)的最后三个不重要的因素,通过推车输出的时间部分和车辆特性的无关部分,构建了终极动态贝叶斯网络(DBN)。模拟表明,最有效的出口搜索周期是中间逃逸阶段,其在触发紧急信号后10秒,并且逃逸概率随着有效的出口搜索而明显增加。此外,接收紧急逃避培训有助于大幅逃逸概率提高超过10%。与不同的故障模式相比,应急锤布局和门可靠性对逃逸概率提高的影响比过通道状况更大。基于仿真结果,如果紧急锤,门和过道均处于故障状态,则逸出概率将显着降至0.55以下。

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