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Effect of cognitive load on tactor location identification in zero-g

机译:认知载荷对零克卫拉轮定位识别的影响

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A wearable haptic interface has been developed to impart vibrotactile information to its user with the goal of improving situation awareness. The effectiveness of the haptic interface has been evaluated in three experiments aboard the NASA KC-135A reduced gravity aircraft. During the third flight, subjects identified the locations of tactors embedded in the haptic display in a microgravity environment. We report our results on how cognitive load affects one's ability to identify the locations of vibrotactile stimulations in the altered-gravity environment. Cognitive load was manipulated by requiring subjects to be strapped to the floor of the KC-135 (low cognitive-load condition) or allowing them to float freely in microgravity (high cognitive-load condition). It was found that tactor-location identification was more accurate in the low cognitive-load condition than in the high cognitive-load condition. Our results have implications for the design of multimodal user interfaces in general.
机译:已经开发了一种可穿戴触觉界面,以将振动信息传授给其用户,以提高形势意识的目标。触觉界面的有效性已经在NASA KC-135A减少的重力飞机上进行了三个实验评估。在第三种飞行期间,受试者鉴定了在微匍匐环境中嵌入触觉显示中的术的位置。我们向我们的结果报告了认知负荷如何影响一个人在改变的 - 重力环境中识别振动触发刺激位置的能力。通过要求受试者将受试者捆绑在KC-135(低认知载荷条件)的地板上或允许它们在微匍匐(高认知载荷条件)上漂浮的主体来操纵认知载荷。有人发现,在低认知载荷条件下,卫生组​​织定位识别比在高认知载荷条件下更准确。我们的结果对于一般来说,对多模式用户界面的设计有影响。

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