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A performance-based evaluation of B-2 cursor system gain functions for use on navigational update and targeting tasks

机译:基于性能的B-2光标系统增益功能评估,可用于导航更新和定位任务

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Sixteen USAF crew members participated in experiments evaluating cursor slewing performance with the B-2 radar-embedded cursor system. Performance was evaluated with the current linear force/velocity function and an alternative sigmoidal function designed to elicit improved performance. One experiment utilized a radar update task requiring only fine positioning movements of the cursor. The second experiment consisted of a semi-operational targeting task in which both gross and fine positioning movements of the cursor were required. In addition, the effects of ambiguity of the target pixel and variability in cursor system processing delay were examined. In both experiments, the sigmoidal gain function elicited lower designation time and fewer overshoots than the linear function. Although accuracy of the final designation was not affected by gain function in either experiment, designation error was found to be less than one pixel when the target pixel was highlighted. Variability in the length of the cursor processing delay did not significantly impact designation error, designation time, or the number of overshoots. Subjectively, crew members unanimously preferred the sigmoidal function for performing aimpoint designation.
机译:美国空军16名机组人员参加了使用B-2雷达嵌入式光标系统评估光标回转性能的实验。使用当前的线性力/速度函数和旨在提高性能的另一种S型函数来评估性能。一个实验利用了雷达更新任务,该任务只需要光标的精细定位即可。第二个实验由一个半操作目标任务组成,该任务需要同时进行光标的总体定位和精细定位。另外,检查了目标像素的歧义性和光标系统处理延迟的变化性的影响。在两个实验中,与线性函数相比,S形增益函数引起的指定时间更短且过冲次数更少。尽管在任何一个实验中最终指定的精度均不受增益函数的影响,但是当突出显示目标像素时,发现指定误差小于一个像素。游标处理延迟时间的长度变化不会显着影响指定错误,指定时间或超调次数。主观上,机组人员一致喜欢使用S型功能来执行瞄准点指定。

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