Adjustable stereoscopic camera modules align zero disparity positions with subjects to minimize viewer discomfort.
Dynamic switching of viewpoint image positions and light separation transmittance reduces pseudoscopic areas without deteriorating image resolution.
A camera rig system automatically optimizes focal length and orientation parameters to generate precise autostereoscopic 3D visualizations.
A camera uses an optical beam splitter to direct light toward a plenoptic lens for depth information capture.
Wireless transceivers determine device location and orientation, replacing computer vision to reduce processing time.
A video production system uses wireless tracking devices to provide real-time location data for automatic camera convergence and vertical alignment.
An image processing apparatus generates versatile files by synthesizing missing parallax images from stored subsets and normal data.
Dynamic programming matching on thinned images estimates depth for 3D displays, correcting misalignment via offset addition and lookup tables.
A display system shifts image patterns based on viewer position to deliver high-resolution 3D imaging without special glasses.
Segmenting optical paths for independent 2D and 3D image generation overcomes visibility limits and light loss in constrained vehicle displays.
Head-mounted display image processing system transforms camera views to match user perspective using depth maps and keyframes.
Line-wise and column-wise hybrid recursive matchers enable real-time disparity estimation.