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全身振动下头盔显示器图像稳定的益处。

Benefits of helmet-mounted display image stabilisation under whole-body vibration.

作者信息

Wells M J, Griffin M J

出版信息

Aviat Space Environ Med. 1984 Jan;55(1):13-8.

PMID:6696690
Abstract

The effects of whole-body vertical vibration in the range 2.5-25 Hz on visual performance with two types of raster scan helmet-mounted display have been determined. The benefit of an image stabilisation system on numeral reading performance during vibration was also assessed with both display systems. Increases in mean reading time of over 130%/m . s-2 R.M.S. and increases in percentage reading error of more than 30%/m . s-2 R.M.S. were recorded with unstabilised displays. With vertical and horizontal image stabilisation, these decrements in performance were reduced to less than 40%/m . s-2 R.M.S. increase in reading time and less than 10%/m . s-2 R.M.S. increase in reading error. Data on the transmission of vibration from the seat to the head and from the head to the helmet were also obtained. These indicate a relation between biodynamic behaviour and visual performance during vibration.

摘要

已确定2.5至25赫兹范围内的全身垂直振动对两种类型的光栅扫描头盔式显示器视觉性能的影响。还使用这两种显示系统评估了图像稳定系统在振动期间对数字读取性能的益处。在未稳定的显示器上,记录到均方根加速度每增加1米·秒⁻²,平均读取时间增加超过130%,读取误差百分比增加超过30%。通过垂直和水平图像稳定,这些性能下降减少到均方根加速度每增加1米·秒⁻²时,读取时间增加小于40%,读取误差增加小于10%。还获得了从座椅到头部以及从头部到头盔的振动传递数据。这些数据表明了振动期间生物动力学行为与视觉性能之间的关系。

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