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Wetware, Hardware, or Software Incapacitation: Observational Methods to Determine When Autonomy Should Assume Control

机译:湿软件,硬件或软件的丧失能力:确定自主权何时应受控制的观察方法

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Control-theoretic modeling of human operator's dynamic behavior in manual control tasks has a long, rich history. There has been significant work on techniques used to identify the pilot model of a given structure. This research attempts to go beyond pilot identification based on experimental data to develop a predictor of pilot behavior. Two methods for predicting pilot stick input during changing aircraft dynamics and deducing changes in pilot behavior are presented This approach may also have the capability to detect a change in a subject due to workload, engagement, etc., or the effects of changes in vehicle dynamics on the pilot. With this ability to detect changes in piloting behavior, the possibility now exists to mediate human adverse behaviors, hardware failures, and software anomalies with autonomy that may ameliorate these undesirable effects. However, appropriate timing of when autonomy should assume control is dependent on criticality of actions to safety, sensitivity of methods to accurately detect these adverse changes, and effects of changes in levels of automation of the system as a whole.
机译:在手动控制任务中对操作员的动态行为进行控制理论建模具有悠久的历史。在用于识别给定结构的试验模型的技术方面,已经进行了大量工作。这项研究试图超越基于实验数据的飞行员识别来开发飞行员行为的预测器。提出了两种在飞机动态变化期间预测驾驶员操纵杆输入并推断驾驶员行为变化的方法。这种方法也可能具有检测由于工作量,参与度等因素或车辆动力学变化的影响而引起的对象变化的能力。在飞行员上。有了这种检测驾驶员行为变化的能力,现在就有可能通过自主权来调解人类的不良行为,硬件故障和软件异常,从而减轻这些不良影响。但是,何时应该采取自主权进行控制的适当时机取决于行动对安全性的严格程度,准确检测这些不利变化的方法的敏感性以及整个系统的自动化程度变化的影响。

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