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The Analysis of the Contribution of Human Factors to the In-flight Loss of Control Accidents

机译:人为因素对飞行中控制事故损失的贡献分析

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In-flight loss of control (LOC) is currently the leading cause of fatal accidents based on various commercial aircraft accident statistics. As the Next Generation Air Transportation System (NextGen) emerges, new contributing factors leading to LOC are anticipated. The NASA Aviation Safety Program (AvSP), along with other aviation agencies and communities are actively developing safety products to mitigate the LOC risk. This paper discusses the approach used to construct a generic integrated LOC accident framework (LOCAF) model based on a detailed review of LOC accidents over the past two decades. The LOCAF model is comprised of causal factors from the domain of human factors, aircraft system component failures, and atmospheric environment. The multiple interdependent causal factors are expressed in an Object-Oriented Bayesian belief network. In addition to predicting the likelihood of LOC accident occurrence, the system-level integrated LOCAF model is able to evaluate the impact of new safety technology products developed in AvSP. This provides valuable information to decision makers in strategizing NASA's aviation safety technology portfolio. The focus of this paper is on the analysis of human causal factors in the model, including the contributions from flight crew and maintenance workers. The Human Factors Analysis and Classification System (HFACS) taxonomy was used to develop human related causal factors. The preliminary results from the baseline LOCAF model are also presented.
机译:根据各种商用飞机事故统计,目前机上失控(LOC)是致命事故的主要原因。随着下一代航空运输系统(NextGen)的出现,可以预见到导致LOC的新因素。 NASA航空安全计划(AvSP)以及其他航空机构和社区正在积极开发安全产品,以降低LOC风险。本文讨论了在过去二十年来对LOC事故的详细回顾基础上,用于构建通用的集成LOC事故框架(LOCAF)模型的方法。 LOCAF模型由人为因素,飞机系统组件故障和大气环境等方面的因果因素组成。多个相互依存的因果因子在面向对象的贝叶斯信念网络中表达。除了预测LOC事故发生的可能性外,系统级集成的LOCAF模型还能够评估AvSP开发的新安全技术产品的影响。这为决策者制定NASA的航空安全技术产品组合提供了宝贵的信息。本文的重点是分析模型中的人为因素,包括机组人员和维修人员的贡献。人为因素分析和分类系统(HFACS)分类法用于开发人为相关的因果因素。还介绍了基线LOCAF模型的初步结果。

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