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A Methodology for Evaluating the Fidelity of Ground-Based Flight Simulators

机译:评估地面飞行模拟器保真度的方法

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摘要

An analytical and experimental investigation was undertaken to model the manner in which pilots perceive and utilize visual, proprioceptive, and vestibular cues in a ground-based flight simulator. The study was part of a larger research effort which has the creation of a methodology for determining flight simulator fidelity requirements as its ultimate goal. The study utilized a closed-loop feedback structure of the pilot/simulator system which included the pilot, the cockpit inceptor, the dynamics of the simulated vehicle and the motion system. With the exception of time delays which accrued in visual scene production in the simulator, visual scene effects were not included in this study. The NASA Ames Vertical Motion Simulator was used in a simple, single-degree of freedom rotorcraft bob-up/down maneuver. Pilot/vehicle analysis and fuzzy-inference identification were employed to study the changes in fidelity which occurred as the characteristics of the motion system were varied over five configurations. The data from three of the five pilots that participated in the experimental study were analyzed in the fuzzy-inference identification. Results indicate that both the analytical pilot/vehicle analysis and the fuzzy-inference identification can be used to reflect changes in simulator fidelity for the task examined.
机译:进行了分析和实验研究,以模拟飞行员在地面飞行模拟器中感知和利用视觉,本体感受和前庭线索的方式。这项研究是一项更大的研究工作的一部分,该研究创造了一种确定飞行模拟器保真度要求的方法作为其最终目标。该研究利用了飞行员/模拟器系统的闭环反馈结构,该结构包括飞行员,驾驶舱感受器,模拟车辆的动力学和运动系统。除了模拟器中视觉场景产生中的时间延迟外,视觉场景效果未包括在本研究中。 NASA Ames垂直运动模拟器用于简单,单自由度的旋翼飞机起/降动作。飞行员/车辆分析和模糊推理识别被用于研究保真度的变化,保真度的变化是由于运动系统的特性在五种配置上变化而引起的。在模糊推理识别中分析了参与实验研究的五个飞行员中三个的数据。结果表明,分析性驾驶员/车辆分析和模糊推理识别均可以用于反映所检查任务的模拟器保真度的变化。

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    Hess, R. A.; Zeyada, Y.;

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  • 年度 1999
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