A hand-held laser scanner calculates its own pose using embedded imaging and triangulation.
A grid-based method compensates ink density on thermally transformable polymer webs.
Aligns color-thermal region features via RoIAlign and deviation regression to resolve spatial misalignment from sensor differences.
A range imaging sensor captures torso depth data to estimate respiratory parameters through non-contact optical tracking.
Optical imaging determines fish characteristics to divert whole fish into specific cooling compartments, reducing handling time and preserving catch quality.
Cylindrical projections align vertical pixels to generate top-down views while reducing computational complexity and memory usage.
An information processing apparatus deletes redundant feature data from storage based on predetermined conditions to optimize recognition workflows.
An identification apparatus extracts feature points from product images to determine similarity between OEM items.
A texture encoding method estimates dominant direction using geometric planes to derive endpoint color values.
System adjusts transmission frequency using feature analysis to prevent false images during scene changes.
An object tracking unit identifies targets in a search region and defines smaller tracking regions to reduce computational load.
Optimizing a cost function across multiple sensor modalities to locate and model 3D objects with high accuracy.
Projection vector folding reduces support vector order to lower arithmetic operations and memory requirements.
Parallel tracking and clustering operations extract dynamic salient objects to reduce processing resource consumption on personal devices.
Tomosynthesis imaging reconstructs three-dimensional slices to detect hidden solder ball defects obscured by connector blades, reducing false call rates.
Face orientation detection calculates deviation angles and flips live streaming video feeds to resolve host misalignment issues during co-hosting interactions.
Image processing circuitry adapts display data using position-dependent compensation factors to correct light emission across curved surfaces.
Server verifies user proximity to authenticate memorabilia items, resolving counterfeit risks while minimizing location tracking energy.
An intelligent terminal processes image data streams using preliminary action to generate target images.
An edge smoothing circuit reduces luminance gradients at image edges, filtering noise intensity in the power frequency band for stable traffic light detection.
A hierarchical tile list structure organizes graphics primitives across multiple resolution levels to optimize memory allocation.
Reconstructing 3D poses from multi-camera feeds resolves ambiguity in action recognition while reducing manual monitoring complexity.
A hybrid detection system correlates wireless signal strength with camera images to identify external devices.
A mobile device system uses semantic indicators from captured images to identify estimated positions within candidate areas.
An article position estimation system combines relative movement tracking with periodic absolute reference point recognition to maintain accurate mobile body location data.
An estimation apparatus classifies candidate measurement points to determine the position and posture of a second moving object.
Augmented reality system overlays location marks on video to identify objects via unique blinking light patterns.
A facial expression label assignment apparatus calculates representative feature quantities from group-specific face images to determine corrected labels.
Segmented modules process selected target object audio packets via C-V2X channels, delivering spatialized sound that resolves latency and complexity trade-offs.
Binocular positioning algorithm calculates fingertip coordinates from hand key points, eliminating external controllers and improving immersion.
Integrated memory stores calibration data for optical sensors, eliminating manual user effort while ensuring measurement precision.
Segmenting images into regions extracts local features that reduce computational complexity while maintaining detection accuracy for manipulated content.
Smartphone photography captures ceiling textures via color calibration templates, enabling printed steel grilles that blend speakers into the environment.
Host device adjusts display data compressibility via dynamic parameter settings to optimize transmission efficiency.
A method selects stereoscopic imaging viewpoint pairs based on disparity ranges to optimize 3D visual output.
A self-service checkout terminal reads identity card data and captures facial features for automated age verification.
Sequential shadow imaging replaces mechanical baseline spacing to resolve measurement precision against compact probe size constraints.
A 3D printing analysis system processes video game models into stable voxel shells.
Electronic device detects gesture shape and position to determine lighting information, resolving the trade-off between ease of operation and device complexity.
Apparatus renders 3D object imagery into a second user's virtual space using synchronized point-of-view data from a first user.
A system maps multiple views to a curved display surface using two-dimensional map projections.
A volumetric video coding system projects 3D data onto multiple 2D planes for standard encoding.
Automated angle measurement between scan line and bloodstream central axis.
Synthetic image generation augments training data to improve detection accuracy across wide areas while reducing processing time for real-time fire monitoring.
Multispectral satellite bathymetry minimizes modeled and sensed radiance differences to estimate water depth despite varying turbidity.
GIST integrates AI-annotated pathology images with spatial transcriptomics to resolve measurement precision and device complexity contradictions.
A contour extraction method creates a dictionary linking secondary electron images to backscattered electron contours.
A pre-processing circuit generates feature value signals from event data using weighted addition.
Sequential pseudo-random dot projectors aggregate temporal image sequences to boost spatial resolution.
A video merging system combines enhanced vision frames with synthetic vision frames to create a single composite display for pilots.