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Mitigating functional complexity failures: Designing the operator inside the vehicle OODA-Loop

机译:缓解功能复杂性故障:在车辆OODA循环内设计操作员

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A class of aircraft accidents and incidents, known as Controlled Flight into Stall (CFIS), are characterized by a structurally, mechanically, electronically sound aircraft that is commanded by the automation to fly into the onset of an aerodynamic stall. These accidents are not the results of failed components; instead, they occur as a result of the complexity of the behavior and architecture of the automation that under rare circumstances results in an inappropriate command. This type of “failure,” is known as a Functional Complexity Failure (FCF). One of the most pernicious characteristics of FCFs is that they are difficult for operators to detect and intervene (i.e. they “start a fire and simultaneously turn off the fire alarm”). Researchers studying the CFIS accidents have proposed specific point-fixes to the automation to assist in preventing a specific FCF or by alerting the flight crew in these scenarios (e.g. energy-situation awareness, low speed alerting, etc). Without a holistic view for combating FCF's, these solutions are simply fighting battles in the last war. This paper describes a holistic approach to analyzing the manner in which FCFs occur and how to mitigate them. The novel approach described in this paper is to conduct a thought experiment in which the flight crew and automation are treated as adversaries in an Observe-Orient-Decide-Act (OODA) Loop. This analysis shows how in an FCF, the automation deploys techniques (e.g. creating complacency, uncertainty and disorder, hidden intentions, deception, and distraction) to get “inside” the flight crew OODA-loop. A holistic mitigation approach is described to design the automation to ensure that the operator is always inside the vehicle's OODA loop.
机译:一类飞机事故和事故征候,被称为可控飞行失速(CFIS),是由是由自动化指挥飞入空气动力学失速的发作的结构上,机械,电子音响飞机表征。这些事故都没有发生故障的组件的结果;相反,它们发生的行为的复杂性和自动化的体系结构的结果下,在不适当的命令,极少数情况下的结果。这种类型的“失败”被称为一个功能复杂性故障(FCF)。一个FCF中最有害的特点是,他们是难以为运营商检测和干预(即他们“引发火灾,同时关掉火警”)。研究人员研究了CFIS事故提出了具体的点修正到自动化以帮助防止特定的FCF或在这些场景提醒飞行机组(例如能源形势的认识,低速报警等)。如果没有在最后一战打击FCF的,这些解决方案都只是打仗的整体视图。本文描述了一个全面的方法来分析,其中的FCF发生的方式以及如何降低它们。在本文所描述的新颖的方法是进行在机组人员和自动化在观察-东方决定-法案(OODA)循环视为对手一个思想实验。这一分析表明如何在FCF,自动化部署技术(例如创建自满,不确定性和混乱,隐藏的意图,欺骗,和分心),以得到“内部”机组人员OODA循环。一个全面的应对手段,被描述为设计自动化,以确保运营商始终是车辆的OODA循环中。

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