航空风险评估任务中的三概率密度分布模型

IF 0.8 Q3 ENGINEERING, AEROSPACE
I. Ostroumov, Karen B. Marais, N. Kuzmenko, Nicoletta Fala
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引用次数: 23

摘要

飞机偏离预定轨道的概率是航空安全分析的核心问题。我们建议使用三种概率密度分布函数的混合来完成航空风险评估任务。该模型考虑了导航系统误差、飞行技术误差和罕见事件发生的影响。采用单变量广义误差分布作为分布函数的基本组成部分,将误差分布模型由正态误差分布配置为双指数分布函数。利用极大似然法对所提出的三变量广义误差分布(TUGED)进行训练样本的统计拟合。用序列逼近法估计最优参数集,并确定精度水平。将所建立的密度模型应用于飞机起降阶段偏离跑道中心线的风险评估。通过卡方、赤池和贝叶斯信息准则验证了模型的有效性。与双概率密度分布模型相比,TUGED拟合结果具有更好的拟合性能。飞机偏离跑道的风险被认为是罕见事件发生的概率,并被估计为拖曳下的面积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TRIPLE PROBABILITY DENSITY DISTRIBUTION MODEL IN THE TASK OF AVIATION RISK ASSESSMENT
The probability of an airplane deviation from pre-planned trajectory is a core of aviation safety analysis. We propose to use a mixture of three probability density distribution functions it the task of aviation risk assessment. Proposed model takes into account the effect of navigation system error, flight technical error, and occurrence of rare events. Univariate Generalized Error Distribution is used as a basic component of distribution functions, that configures the error distribution model from the normal error distribution to double exponential distribution function. Statistical fitting of training sample by proposed Triple Univariate Generalized Error Distribution (TUGED) is supported by Maximum Likelihood Method. Optimal set of parameters is estimated by sequential approximation method with defined level of accuracy. The developed density model has been used in risk assessment of airplane lateral deviation from runway centreline during take-off and landing phases of flight. The efficiency of the developed model is approved by Chi-square, Akaike’s, and Bayes information criteria. The results of TUGED fitting indicate better performance in comparison with double probability density distribution model. The risk of airplane veering off the runway is considered as the probability of a rare event occurrence and is estimated as an area under the TUGED.
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来源期刊
Aviation
Aviation ENGINEERING, AEROSPACE-
CiteScore
2.40
自引率
10.00%
发文量
20
审稿时长
15 weeks
期刊介绍: CONCERNING THE FOLLOWING FIELDS OF RESEARCH: ▪ Flight Physics ▪ Air Traffic Management ▪ Aerostructures ▪ Airports ▪ Propulsion ▪ Human Factors ▪ Aircraft Avionics, Systems and Equipment ▪ Air Transport Technologies and Development ▪ Flight Mechanics ▪ History of Aviation ▪ Integrated Design and Validation (method and tools) Besides, it publishes: short reports and notes, reviews, reports about conferences and workshops
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