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Hyperstereopsis in helmet-mounted NVDs: absolute distance perception

机译:Upersteopsis在头盔安装的NVDS:绝对距离感知

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Modern helmet-mounted night vision devices, such as the Thales TopOwl helmet, project imagery from intensifiers mounted on the side of the helmet onto the helmet faceplate. The increased separation of the cameras induces hyperstereopsis - the exaggeration of the stereoscopic disparities that support the perception of relative depth around the point of fixation. Increased camera separation may also affect absolute depth perception, because it increases the amount of vergence (crossing) of the eyes required for binocular fusion, and because the differential perspective from the viewpoints of the two eyes is increased. The effect of hyperstereopsis on the perception of absolute distance was investigated using a large-scale stereoscopic display system. A fronto-parallel textured surface was projected at a distance of 6 metres. Three stereoscopic viewing conditions were simulated - hyperstereopsis (four times magnification), normal stereopsis, and hypostereopsis (one quarter magnification). The apparent distance of the surface was measured relative to a grid placed in a virtual "leaf room" that provided rich monocular cues, such as texture gradients and linear perspective, to absolute distance as well as veridical sterescopic disparity cues. The different stereoscopic viewing conditions had no differential effect on the apparent distance of the textured surface at this viewing distance.
机译:现代头盔安装的夜视设备,如Thales Topowl头盔,从强化器安装在头盔的侧面上的强烈装饰的项目图像到头盔面板上。摄像机的分离增加诱导脱斜面 - 立体差异覆盖支持对固定点周围相对深度的看法的立体差异。相机分离增加也可能影响绝对深度感知,因为它增加了双目融合所需的眼睛的血糖(交叉)的量,并且因为从两只眼睛的观点来看,差分观点增加。使用大规模立体显示系统研究了uphersteopsis对绝对距离感知的影响。距离距离6米的前方纹理表面。模拟了三个立体观察条件 - 脱蛋白(四倍放大倍数),正常立体试作和次次倍数(四分之一放大率)。相对于放置在虚拟“叶室”中的网格测量表面的表观距离,该网格提供了富有的单眼提示,例如纹理梯度和线性视角,对绝对距离以及近距离的定义差异线索。不同的立体观察条件对该观看距离在纹理表面的表观距离上没有差异影响。

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