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Comparison of Pilot and Automation Generated Lateral Conflict Resolutions

机译:飞行员和自动化生成的横向冲突解决方案的比较

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This study compares and contrasts lateral conflict resolutions generated by pilots (with and without a set of decision support tools), with those generated by a fully automated conflict resolution tool that generates optimal (smallest path deviation) resolutions. The conflict geometries investigated were all factorial combinations of three levels of Intruder aircraft speed, three levels of initial Ownship distance to closest approach, and nine conflict angles. The resolution decision support tools included dynamic conflict alerting, which indicated whether a proposed path was conflict free, and a dynamic predictor system that showed a fast time depiction of the proposed resolution trajectories. The automation-generated resolutions, computed using a geometric optimization algorithm, served as a benchmark against which the pilot-generated resolutions were compared. Without decision support tools the pilot-generated resolutions were often ineffective in providing the necessary separation, particularly at smaller conflict angles. The resolutions tended to be effective when the decision support tools were used. Resolution cost, as measured by added path length, was greater for pilot-generated resolutions (averaging 2.7 nmi) compared to the automation-generated resolutions (averaging 1.3 nmi). When pilots had the decision support tools, their strategies, as indexed by whether they turned toward or away from the Intruder, and the mean locations at which they turned back to recapture their original route, tended to be the same as that of the automated system.
机译:这项研究比较并对比了飞行员(有和没有一套决策支持工具)产生的横向冲突解决方案,以及由产生最佳(最小路径偏差)解决方案的全自动冲突解决工具生成的横向冲突解决方案。研究的冲突几何结构是入侵者飞机速度的三个级别,最接近进近点的初始拥有距离的三个级别以及九个冲突角度的因子组合。解决方案决策支持工具包括动态冲突警报和动态预测系统,动态冲突警报可指示提议的路径是否没有冲突,动态预测系统可快速显示提议的解决方案轨迹。使用几何优化算法计算的自动生成的分辨率作为基准,比较了飞行员生成的分辨率。没有决策支持工具,飞行员产生的决议通常无法有效地提供必要的分隔,特别是在较小的冲突角度。使用决策支持工具时,这些决议往往很有效。与自动生成的分辨率(平均1.3 nmi)相比,飞行员增加的分辨率(平均2.7 nmi)的分辨率成本(通过增加的路径长度来衡量)要高得多。当飞行员拥有决策支持工具时,他们的策略(与是否转向入侵者或远离入侵者以及他们转回以重新夺回其原始路线的平均位置有关)通常与自动化系统相同。

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