Pilot performance during simulated point and boundary avoidance tracking tasks

Q. Xia, D. Marchesoli, P. Masarati, M. Liu
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Abstract

Helicopters are used in complex and harsh operational environments, such as search and rescue missions and firefighting, that require operating in ground proximity, tracking targets while avoiding impacting obstacles, namely a combination of point tracking (positive) and boundary avoidance (negative) objectives. A simulation task representing simplified helicopter dynamics is used to investigate point tracking and boundary avoidance tasks. The variance and regression analysis are used to study the effects of task conditions on participants’ tracking errors and input aggression. The overall tracking error shows a negative correlation with input aggression. The participants tend to have higher input aggression and lower tracking error near the boundaries, exposing the switching of manipulation input strategies under different task conditions. It also suggests a potential way of designing simulation tasks for human operators manipulating helicopters and a trigger for investigating pilots’ biodynamic feedthrough.
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飞行员在模拟避点和避界跟踪任务中的表现
直升机用于复杂恶劣的作业环境,如搜救任务和灭火,需要贴近地面运行,在跟踪目标的同时避免撞击障碍物,即点跟踪(正向)和边界回避(负向)目标的结合。模拟任务代表简化的直升机动力学,用于研究点跟踪和边界规避任务。方差分析和回归分析用于研究任务条件对参与者跟踪误差和输入攻击的影响。总体跟踪误差与输入攻击性呈负相关。在边界附近,参与者的输入攻击性往往较高,而跟踪误差较低,这暴露了在不同任务条件下操作输入策略的切换。这也为人类操作员操纵直升机的模拟任务设计提供了一种潜在的方法,并为研究飞行员的生物动力馈通提供了一个触发点。
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