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Explanatory tool for decision support on data-fused panoramic cockpitdisplays,

机译:说明性工具,可为数据融合的全景座舱显示器提供决策支持,

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Abstract: Data-fused panoramic displays are currently being developed to provide decision support to military pilots in air-to-air combat environments. This paper reports the findings from a series of studies conducted using simulated data-fused explanatory displays. The displays provided explanations, rather than advice, in an endeavor to keep the pilot in the decision loop while improving the accuracy and/or speed of his mission-critical decisions. In addition to the basic display of the threat type, speed and direction (the control condition), three forms of explanatory displays were presented: text only, graphics only, and text and graphics (redundant). These displays provided information regarding the hostile aircraft's missile engagement zones and success envelopes. For effective human-system interaction, an appropriate level of operator trust is required. A critical determinant of trust is the transparency of the system interface, which should allow the operator to assess the system's accuracy. Two experiments were conducted to investigate the issues of trust and transparency of the different display formats used in the decision support system. Participants were asked to identify the highest threat posed by three hostile aircraft in an air combat scenario in the first experiment, and to assess whether explanations generated for a single hostile aircraft were correct or incorrect in the second. The scenarios, which were designed to present real-world decision tasks, were developed through discussions with RAF aircrew. Low trust was found to have a negative impact on decision-making and situational awareness, with subjects in the low trust condition making fewer correct decisions and reporting lower levels of subjective situational awareness than subjects in the high trust condition. Decision-making with low trust was particularly impaired in the test only condition. Poorer memory for hostile aircraft was observed where explanations were provided, compared to the control condition, in which no explanations were provided. The inability of subjects to identify erroneous textural explanations suggested a lack of transparency in the textual explanations. These results are discussed with regard to the implications of the different display formats for decision-making and situational awareness with data- fused cockpit displays.!7
机译:摘要:目前正在开发数据融合的全景显示器,以为空战环境中的军事飞行员提供决策支持。本文报告了使用模拟数据融合的解释性显示进行的一系列研究的结果。这些显示提供了说明而非建议,以使飞行员保持决策循环,同时提高其关键任务决策的准确性和/或速度。除了威胁类型,速度和方向(控制条件)的基本显示之外,还提供了三种形式的说明性显示:仅文本,仅图形以及文本和图形(冗余)。这些显示提供了有关敌机飞行器的导弹接触区和成功信封的信息。为了有效地进行人机交互,需要适当级别的操作员信任。信任的关键决定因素是系统接口的透明度,这应该使操作员能够评估系统的准确性。进行了两个实验,以调查决策支持系统中使用的不同显示格式的信任度和透明度。在第一个实验中,要求参与者确定三架敌对飞机在空战场景中构成的最高威胁,并在第二次实验中评估针对一架敌对飞机产生的解释是正确还是不正确。通过与英国皇家空军的机组人员讨论,开发了旨在呈现现实世界决策任务的方案。发现低信任度对决策和态势感知有负面影响,处于低信任度条件下的主体做出的正确决策较少,并且报告的主观情境意识水平低于处于高信任度条件下的主体。在仅测试条件下,低信任度的决策尤其受到损害。与没有提供解释的控制条件相比,观察到提供解释的敌对飞机记忆力较差。主体无法识别错误的结构解释,这表明文本解释缺乏透明度。讨论了这些结果,探讨了数据融合驾驶舱显示器对不同显示格式对决策和态势感知的影响。7

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