运动病
运动(物理)
计算机科学
航空航天
人工智能
动力学(音乐)
飞行模拟器
计算机视觉
飞行动力学
飞行试验
模拟
空间定向障碍
感知
运动捕捉
航空电子设备
工程类
控制工程
数据建模
人体运动
质量(理念)
信号(编程语言)
匹配移动
控制理论(社会学)
作者
Umberto Saetti,Philippe Joseph Petit
标识
DOI:10.4050/jahs.71.022002
摘要
This article presents the implementation of an integrated model for rotorcraft flight dynamics, motion perception, and motion sickness. Merfeld’s multidimensional sensory conflict model (MSCM), along with its extension to visual–vestibular interaction, is employed to represent motion perception both with and without visual feedback. A recently developed model is then used to predict motion sickness severity based on the neural signal mismatch generated by the MSCM. These models are coupled with a generic multirotor/wing flight dynamics code, which is adapted to represent a multipurpose helicopter configuration representative of the Bo 105. The bare-airframe flight dynamics is validated against flight-test data in the frequency domain. Closed-loop simulations are used to demonstrate the model’s application to coordinated turns, the onset of spatial disorientation during a graveyard spiral, and motion sickness during a slalom maneuver. In addition, the approach is validated against motion sickness flight-test data from the German Aerospace Center (DLR). This modelling strategy supports the prediction of ride quality metrics and enables the integration of flight dynamics with human factors considerations.
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