A depth map modification method correlates pixel height with luminance and chrominance values to enhance stereoscopic image data.
Nested lens arrays concentrate light to resolve the tradeoff between thin form factor and sharp imaging quality.
Rotating display screen and parallax barrier pixels via a rotation sensor to maintain alignment.
An image processing apparatus detects capture device vibration to update calibration data.
Optimizing the chiral dopant pitch between 20 μm and 60 μm enhances transmittance and response speed, resolving limitations in 2D to 3D switching efficiency.
A wide-angle optical system uses an optical member with inclined surfaces to reflect and intersect light rays from paired lens units.
A three-channel reflector system redirects light paths to converge at a nodal point on a single imager.
A 3D display apparatus uses a concave mirror and light transmitting section to form real images without blocking the optical path.
A rendering method applies a shared viewpoint texture to special case surfaces in stereoscopic images.
Segmenting the superlens array into stacked films resolves manufacturing complexity while maintaining resolution and depth of field for multi-view imaging.
A video rendering system parameterizes visible surfaces and precomputes illumination values for each texel to enable real-time multi-viewpoint display.
A 3D shutter glasses design uses a light transmitting hole array in each lens to alternate left and right eye image reception.
A content receiver generates 3D visuals across multiple virtual planes using sensor inputs to adjust position and transparency.
Grating interferometer and spatial light modulator expand effective aperture to reduce diffraction blur while maintaining high angular resolution.
Segmented passband filters switch independently to route light beams, eliminating brightness gradients and cross-talk in autostereoscopic 3D vehicle displays.
Image sensor circuitry combines neighboring pixel values using a predefined function to eliminate laser speckle artifacts without mechanical diffusers.
A computer system generates stereoscopic images of a virtual display device within a superior environment.
Uses invisible light to align TFT and barrier panels, avoiding electrical connections that increase manufacturing complexity.
A 3D video playback control system calculates disparity velocity and acceleration to estimate viewer visual fatigue.
Dynamically adjusts stereoscopic image parallax to predefined page values, resolving inconsistent viewing experiences across album pages.
A stereoscopic display adjusts image size based on user sighting distance to maintain consistent phantom perception.
Horizontal light shifting via a multiplexer balances horizontal and vertical resolution while reducing power consumption in autostereoscopic displays.
A Dynamic Parallel Monocular Projection system creates two exit pupils to dynamically adjust images for individual eye positions within a Head Motion Box.
Automated calibration replaces manual adjustment by using a camera to analyze mirror images, optimizing image arrangement and improving user experience.
Segmenting optical components into a removable module reduces head-worn weight while enabling easy repair.
A display control method adjusts virtual depth based on background distance to resolve parallax conflicts in autostereoscopic screens.
A display device uses a light adjustment mechanism to apply phase retardations across pixel cell lines for selective viewing.
A hybrid camera rig uses planar and non-planar sensor arrays to capture image streams for 3D scene reconstruction.
A 3D display method segments image data into common and residual components to distribute light energy efficiently across the viewing field.
An inclined reflective unit redirects incident light to the lens while acting as an aperture.
A varifocal lens adjusts focal positions while an active optical device changes light propagation paths to generate multi-view images.
A stereo camera system determines object orientation using a cost function global minimum to control driver assistance.
A stereoscopic display system adjusts pixel pitch and color based on detected viewer distance to maintain image quality.
A moving image processing device sets active space pixel values to fixed levels using synchronization signals.
Adaptive light shielding barriers adjust shape based on device orientation to eliminate viewing distance changes.
A display apparatus calculates user movement range from eye tracking data to adjust stereoscopic depth.
A capacitive touch panel operating method uses variable pulse amplitudes for sensing voltage readout during barrier voltage transients.
A near-eye light field display system maps pixel rays to virtual planes to compute elemental image colors.
Independent backlight strips and a grating array guide light to specific viewpoints, reducing resolution loss and image crosstalk in stereoscopic displays.
A control apparatus writes additional imaging state information to facilitate accurate surface normal calculation using multiple light sources.
Dynamic convergence adjustment minimizes eye strain by aligning images to individual viewer distance.
A boundary information providing apparatus generates precise switching markers between 2D and 3D video streams.
An adaptive depth offset calculation system analyzes image edge maps to determine precise perspective perception adjustments.
A stereoscopic display polarization control plate uses segmented light blocking sections to separate eye-specific image paths.
Polygonal image models map viewpoints to images, allowing users to select target angles while the system generates interval images to bridge switches.
Interference filters in passive glasses separate wavelength-modulated light beams, eliminating active shutter complexity and brightness loss.
A virtual camera system adjusts swoop trajectory tilt angles dynamically to match local terrain variance for smoother transitions.
Coordinate transformation maps user gaze to camera controls, enabling operation without removing the headset.
Dynamic posture adjustment mechanisms align optical axes to resolve the trade-off between miniaturization and high-precision stereoscopic display.
A stereoscopic display apparatus generates multiple eye images and corrects current frames using previous data to enhance luminance efficiency.