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On the chaos analysis and prediction of aircraft accidents based on multi-timescales

机译:基于多时间尺度的飞机事故混沌分析与预测

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摘要

Aircraft accident is an outcome of complex nonlinear and multi-scale phenomena, integrated together in some coherent manner. Based on chaos theory, aircraft accidents series of 1/1/1964 to 31/03/2018 are used for this study at different timescales(HM-scale, ETD-scale, EFD-scale and ED-scale). Firstly, the delay times and the optimal embedding dimensions of aircraft accidents series at four timescales are calculated, the phase space reconstruction for accident series are explored. Secondly, Lyapunov spectrums of four series are determined. Finally, the CSVR prediction model based on Support Vector Machine is introduced. A comparison of results reveals that the Largest Lyapunov exponents of four series are all positive, aircraft accident series have chaotic characteristic. There are no clear variation of the time delay, embedding dimension and the largest Lyapunov exponent along with the increase of timescale. The experimental results of prediction model show that the prediction error descends firstly and then ascends along with the decrease of timescale. The EFD-CSVR method is more accurate than other CSVR and simple SVR based on nMAE, mRMSE and mMAPE criteria. (C) 2019 Elsevier B.V. All rights reserved.
机译:飞机事故是复杂非线性和多尺度现象的结果,以某种连贯的方式整合在一起。基于混沌理论,在不同时间尺度(HM规模,ETD级,EFD和EFD和ED-SCALE和ED-SCALE和ED-SCALE和EFD级和EFD-SCALE和ED-Scale和ED-Scale)的飞机事故计划中使用了51/1/194至31/03/2018。首先,计算了四个时间尺度的飞机事故系列的延迟时间和最佳嵌入尺寸,探讨了事故系列的相位空间重建。其次,确定四个系列的Lyapunov频谱。最后,引入了基于支持向量机的CSVR预测模型。结果表明,四个系列最大​​的Lyapunov指数都是积极的,飞机事故系列具有混沌特性。随着时间尺度的增加,延迟,嵌入维度和最大的Lyapunov指数没有明确的变化。预测模型的实验结果表明预测误差首先下降,然后随着时间尺度的减小而下降。基于NMAE,MRMSE和MMAPE标准,EFD-CSVR方法比其他CSVR和简单SVR更精确。 (c)2019 Elsevier B.v.保留所有权利。

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