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Movement Time to an Array of Controls

机译:移动时间到一个控制数组

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摘要

Two tasks in which subjects aim at an array of devices were considered: moving to one knob within an array and moving the finger on a numeric keypad. It was shown by a mathematical model based on Fitts' law, that when the array density is specified for the array of knobs or keys, there is an optimum control size for minimum movement time. The theoretical result was obtained by considering a two-element model of the movement, the first being a reach to the general location of the control and the second describing the insertion of the fingers into the space between adjacent controls. As the first element has a movement time that decreases with increase of control size and the second a time increasing with control size, there is an optimum control size where the movement time is a minimum.
机译:考虑了两个任务,其中受试者的目标是:在数组内移动到一个旋钮并在数字键盘上移动手指。它由基于FITTS定律的数学模型示出,当为旋钮或键阵列指定阵列密度时,有最小的移动时间的最佳控制尺寸。通过考虑运动的两个元素模型来获得理论结果,第一是对控制的一般位置的第一是伸向的,第二个是将指状物插入相邻控制之间的空间中的第二个。由于第一元件具有随着控制尺寸的增加而减小的移动时间,并且第二次随着控制尺寸增加的时间增加,存在最佳控制尺寸,其中移动时间最小。

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