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Identification of Time-Varying Pilot Control Behavior in Multi-Axis Control Tasks

机译:多轴控制任务中的时变导频控制行为的识别

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Recent developments in fly-by-wire control architectures for rotorcraft have introduced new interest in the identification of time-varying pilot control behavior in multi-axis control tasks. In this paper a maximum likelihood estimation method is used to estimate the parameters of a pilot model with time-dependent sigmoid functions to characterize time-varying human control behavior. An experiment was performed by 9 general aviation pilots who had to perform a simultaneous roll and pitch control task with time-varying aircraft dynamics. In 8 different conditions, the axis containing the time-varying dynamics and the growth factor of the dynamics were varied, allowing for an analysis of the performance of the estimation method when estimating time-dependent parameter functions. In addition, a detailed analysis of pilots' adaptation to the time-varying aircraft dynamics in both the roll and pitch axes could be performed. Pilot control behavior in both axes was significantly affected by the time-varying aircraft dynamics in roll and pitch, and by the growth factor. The main effect was found in the axis that contained the time-varying dynamics. However, pilot control behavior also changed over time in the axis not containing the time-varying aircraft dynamics. This indicates that some cross coupling exists in the perception and control processes between the roll and pitch axes.
机译:在飞行线控控制架构的最新发展旋翼机已引入的多轴控制任务时变的先导控制行为识别新的兴趣。在本文中的最大似然估计法来估计的导频模型的参数与时间相关的S型函数来表征时变人类对照行为。实验是由9名通用航空飞行员谁不得不随时间变化的动态飞机执行同步横滚和俯仰控制任务执行。在8种不同的条件下,将含有随时间变化的动力学和动力学的生长因子的轴线是变化的,从而允许用于估计与时间相关的参数的函数时的估计方法的性能的分析。此外,可以进行飞行员适应在辊和俯仰轴两者随时间变化的飞机动力学的详细分析。在两轴先导控制行为在横滚和俯仰随时间变化的动态飞机是显著的影响,并通过生长因子。的主要影响是在包含随时间变化的动态轴找到。然而,导频控制行为也随时间改变在不包含时变飞行器动力学的轴线。这表明一些交叉耦合在横滚和俯仰轴之间的感知和控制过程存在。

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