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Method for measuring stereo camera depth accuracy based on stereoscopic vision

机译:基于立体视觉的立体摄像机深度精度测量方法

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We present a method to evaluate stereo camera depth accuracy in human centered applications. It enables the comparison between stereo camera depth resolution and human depth resolution. Our method uses a multilevel test target which can be easily assembled and used in various studies. Binocular disparity enables humans to perceive relative depths accurately, making a multilevel test target applicable for evaluating the stereo camera depth accuracy when the accuracy requirements come from stereoscopic vision.rnThe method for measuring stereo camera depth accuracy was validated with a stereo camera built of two SLRs (single-lens reflex). The depth resolution of the SLRs was better than normal stereo acuity at all measured distances ranging from 0.7 m to 5.8 m. The method was used to evaluate the accuracy of a lower quality stereo camera. Two parameters, focal length and baseline, were varied. Focal length had a larger effect on stereo camera's depth accuracy than baseline. The tests showed that normal stereo acuity was achieved only using a tele lens.rnHowever, a user's depth resolution in a video see-through system differs from direct naked eye viewing. The same test target was used to evaluate this by mixing the levels of the test target randomly and asking users to sort the levels according to their depth. The comparison between stereo camera depth resolution and perceived depth resolution was done by calculating maximum erroneous classification of levels.
机译:我们提出一种方法来评估以人为中心的应用中的立体摄像机深度精度。它可以在立体相机深度分辨率和人为深度分辨率之间进行比较。我们的方法使用了一个多级测试目标,可以轻松地将其组装并用于各种研究中。双目视差使人类能够准确地感知相对深度,从而使多级测试目标适用于当立体视觉的精度要求来自评估立体摄像机深度精度时。rn测量立体摄像机深度精度的方法已通过由两个SLR构成的立体摄像机进行了验证(单镜头反射)。在从0.7 m到5.8 m的所有测量距离上,SLR的深度分辨率均优于正常的立体视敏度。该方法用于评估质量较低的立体声相机的准确性。焦距和基线这两个参数有所不同。焦距对立体声相机深度精度的影响大于基线。测试表明,只有使用远摄镜头才能达到正常的立体视力。但是,用户在视频透视系统中的深度分辨率与直接肉眼观察有所不同。使用同一测试目标通过随机混合测试目标的级别并要求用户根据其深度对级别进行排序来对此进行评估。立体相机深度分辨率和感知深度分辨率之间的比较是通过计算级别的最大错误分类来完成的。

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