Measures in-swing-plane shaft deflection to select optimal flex based on swing phase and kick velocity.
AR interface transitions notification elements based on detected user movement to enhance situational awareness.
Monocular camera motion analysis detects moving objects in vehicle blind spots using image block partitioning and grouping.
A display control node synthesizes parallel drawn images using previous frame data to maintain continuous output on head-mounted displays.
Heat ranking engine processes spatial-temporal features from video frames to generate heat maps for media objects.
Aligning the electron beam parallel to pattern lines reduces edge blurring and improves measurement precision in SEM overlay metrology.
Segmenting muscle groups enables generating novel poses from 4D scans, reducing manual hand-crafting in CG pipelines.
Segmenting processing between the wearable and a remote server resolves the contradiction between automatic tracking capability and device complexity.
A pedestrian detecting apparatus sets a region of interest using lane coordinates to search for pedestrians with an adaptive window.
A hybrid tracking system associates user identifiers with visual object representations using device movement data from inertial sensors.
High-speed stereo camera detects and analyzes 3D motion of hitting bodies, eliminating sensor attachment complexity while maintaining measurement precision.
A positioning system fuses visual inertial odometry with GNSS data to estimate device location and orientation.
An adaptive defect detection system segments images into patches to evaluate similarity thresholds for manufactured items.
Iterative phase pattern refinement reduces latency for high frame rate imaging through diffusive media.
A wearable display system matches virtual content to detected surfaces in a spatial environment.
A video encoding method reduces motion vector predictor candidates to optimize prediction accuracy.
A handheld RGB-D scanner merges imaging sensors to compute depth maps and generate high-resolution 3D models instantly.
Optical sensors verify disposable kit alignment in apheresis systems to prevent blood leaks and procedure termination.
Segmenting detection areas into distinct zones resolves the trade-off between object precision and ease of operation for autofocus targets.
Constrained quadratic programming resolves fiber crossings and ensures physically plausible tensor estimates despite noise.
Machine learning system aligns medical imaging data using estimated landmarks to generate accurate patient body representations.
Separating direct and global light components via phase-shifting profilometry eliminates noise to visualize middle ear structures.
Embeds time metadata into 3D models to track construction evolution without increasing system complexity.
Automated facial analysis replaces invasive testing and repetitive charting, delivering accurate fertility predictions while reducing user burden.
A cell observation apparatus uses a scanner to adjust the illumination area for specific targets.
Skeleton extraction simplifies complex object models while mass-spring physics drives realistic animation on low-power devices.
Automated image processing analyzes digital color scales to eliminate human interpretation errors and environmental variability in test results.
A forest resource information generation structure extracts breast height diameter from three-dimensional point cloud data captured by UAV-mounted laser scanners.
Camera analysis identifies periodic roll defects on shortened strips, enabling immediate replacement and reducing manual inspection time.
Crop generation system evaluates multiple region of interest ensembles to select optimal image crops.
Optical detection equipment determines container and lock pin positions to align pin holes with pins, eliminating manual calibration requirements.
Embedding virtual defects into CAD data eliminates physical reticle preparation, resolving the trade-off between measurement precision and evaluation time.
Extracting text, people, and landmarks as metadata resolves storage limits while enabling fast image retrieval.
Segmenting two-dimensional line drawings by degree of freedom resolves local optimum issues during three-dimensional object reconstruction.
Physically-based rendering merges MIP and VRT modes via Monte Carlo ray tracing to resolve depth perception and occlusion trade-offs.
A calibration target object with regular right pyramidal recesses and pyramids facilitates accurate detection of reflected light for 3D imaging systems.
A logo detection system uses a heat map with pixel accumulators to track branding logos in video content.
A search engine identifies items using perceptually similar colors through RGB color space conversion and Delta-E similarity calculations.
A graphics identification program detects traces on a touch panel and calculates line segment lengths and angles for shape recognition.
Proximity blob analysis transforms touch screen image data to detect object orientation angles, resolving measurement precision limits in x-y reporting.
Color threshold and linear form detection sorts narrow quartz veins, resolving precision complexity trade-offs.
A medical image overlapping unit aligns 3D data along radial beam paths to generate precise 2D projections.
A personalized communication augmented reality framework assigns digital content to physical objects via a client-host architecture.
Segmented depth map encoding reduces light field data size by up to 90% while maintaining high-resolution image quality.
A system identifies frontal body orientation using 3D skeletal data from multi-camera video feeds.
Segmenting edge detection from correction value calculation reduces memory capacity and circuit scale while correcting toner density variations.
A surgical headlamp adjusts its light beam position and intensity automatically using head and eye position sensors for hands-free operation.
Detects voice sections by analyzing lip movement features from images, resolving noise interference in vehicle environments.
A medication monitoring system uses live image analysis to verify biometric attributes and barcodes for dosage confirmation.