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A Cybernetic Analysis of Maximum Unnoticeable Added Dynamics for Different Baseline Controlled Systems

机译:对不同基准控制系统的最大不明显增加的动力学的控制论分析

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摘要

Maximum unnoticeable added dynamics (MUAD) envelopes have been largely used to assess the adequacy of low-order equivalent systems (LOES) in handling qualities assessment and simulator validation. However, research has shown that more thorough verification of the adequacy of this method is required. This paper studies the influence of the baseline aircraft dynamics on the MUAD envelopes. The assessment is based on quantitative measures of pilot control behaviour obtained with the cybernetic approach. The measures were taken from a human-in-the-loop pitch tracking task experiment with compensatory display. The results are consistent with the MUAD envelopes and reveal no interaction effects of the baseline and added dynamics on the pilot control behaviour. This suggests that, under the considered conditions, the MUAD envelopes shall remain constant independently of the bandwidth of the baseline controlled dynamics.
机译:最大不可察觉的附加动力学(MUAD)包络已广泛用于评估低阶等效系统(LOES)在处理质量评估和模拟器验证中的适当性。但是,研究表明,需要对该方法的适用性进行更彻底的验证。本文研究了基线飞机动力学对MUAD包络线的影响。该评估基于采用控制论方法获得的驾驶员控制行为的定量度量。这些措施是从具有补偿性显示的人在圈内音调跟踪任务实验中采取的。结果与MUAD包络一致,并且没有显示基线和交互动力对飞行员控制行为的交互作用。这表明,在考虑的条件下,MUAD包络应保持恒定,而与基线受控动力学的带宽无关。

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