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Motion Fidelity of Uncoordinated Simulator Roll for Simulation of Coordinated Aircraft Roll

机译:不协调模拟器轧辊的运动保真度,用于仿真协调飞机辊

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This paper investigates how pilots' control behavior and motion perception during a simulated roll maneuver depends on the level of normal g load using a centrifuge-based simulator. Fourteen commercial pilots participated in the study, actively controlling a series of coordinated bank angle changes between -30 and +30 degrees. By changing the cabin orientation and g load, the projected g load along the pilot's longitudinal body axis, i.e. g_z, was varied between 0.36, 1.0, 1.2 and 1.4g. For each g. load, the roll rate gain was systematically varied between 0.2, 0.4, 0.6, and 0.8. Pilots gave separate motion ratings for the perceived (congruent) simulator roll motion, and for the (parasitical) sideforce, or g_y caused by the roll tilt of the simulator cabin relative to the g load. The results showed that the pilot-controlled roll rate decreased linearly with increasing roll motion gain. Furthermore, subjective ratings showed that the optimal roll rate gain decreased as g_z increased, while false cue ratings of the perceived sideforce increased with increasing g_z. It is concluded that the optimal fidelity of simulator roll motion is a compromise between the angular component, i.e. the congruent simulator roll, and the g_y component induced by the cabin tilt relative to the g load, which can be considered a false cue for coordinated flight. Finally, it is discussed that the finding of an optimal roll motion gain is below 1.0.
机译:本文研究了飞行员在模拟滚动机动期间的控制行为和运动感知如何取决于使用基于离心的模拟器的普通G负载的水平。十四名商业飞行员参与了该研究,积极控制一系列协调的银行角度在-30至+ 30度之间。通过改变机舱方向和G负荷,沿着导频的纵向体轴的突出的G负载,即G_Z,在0.36,1.0,1.2和1.4g之间变化。每个g。载荷,辊速增益系统地变化在0.2,0.4,0.6和0.8之间。飞行员为感知(全共)模拟器滚动运动提供了单独的运动额定值,以及由模拟器舱的卷筒相对于G负载引起的(寄宿)侧面或G_Y。结果表明,试验辊速率随着辊运动增益的增加而线性降低。此外,主观额定值表明,随着G_Z的增加,最佳辊速增益降低,​​而感知的侧面的假CUE额定值随着G_Z的增加而增加。结论是,模拟器卷运动的最佳保真度是角分量之间的折衷,即由机舱倾斜相对于G负载引起的一致模拟器辊和G_Y组件,这可以被认为是协调飞行的错误提示。最后,讨论了最佳辊运动增益的发现低于1.0。

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