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Acquisition of Control Skill with Delayed and Compensated Displays

机译:通过延迟和补偿显示获得控制技能

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The difficulty of mastering a two-axis, compensatory, manual control task was manipulated by introducing transport delays into the feedback loop of the controlled element. Realistic aircraft dynamics were used. Subjects' display was a simulation of an "inside-out" artificial horizon instrument perturbed by atmospheric turbulence. The task was to maintain straight and level flight, and delays tested were representative of those found in current training simulators. Delay compensations in the form of first-order lead and first-order lead/lag transfer functions, along with an uncompensated condition, were factorially combined with added delays. Subjects were required to meet a relatively strict criterion for performance. Control activity showed no differences during criterion performance, but the trials needed to achieve the criterion were linearly related to the magnitude of the delay and the compensation condition. These data were collected in the context of aircraft attitude control, but the results can be applied to the simulation of other vehicles, to remote manipulation, and to maneuvering in graphical environments.
机译:通过将运输延迟引入受控元件的反馈回路中,可以解决掌握两轴补偿性手动控制任务的困难。使用了逼真的飞机动力学。受试者的显示是模拟“由内而外”的人工水平仪受到大气湍流干扰的。任务是保持直线和水平飞行,所测试的延迟代表了当前训练模拟器中发现的延迟。一阶超前和一阶超前/滞后传递函数形式的延迟补偿,以及未补偿的条件,都与增加的延迟进行了因子组合。要求受试者满足相对严格的绩效标准。对照活动在标准执行过程中没有显示出差异,但是达到标准所需的试验与延迟的大小和补偿条件线性相关。这些数据是在飞机姿态控制的背景下收集的,但结果可以应用于其他车辆的仿真,远程操纵以及在图形环境中的操纵。

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