Selective conference audio mixing uses speech detection and feed isolation so remote users can overhear team talk without external call noise.
Parallel creation of preview and callback streams cuts camera callback latency and returns stream data to apps faster.
Metadata flags preserve requested recordings while deleting unrequested media objects, cutting cDVR storage load and sync complexity.
A split digital image pipeline lets UAVs process video and still images separately, preserving quality for both without excessive power or delay.
A transparent overlay captures and enlarges selected video regions in any browser, avoiding plug-ins and unnecessary image updates.
Automatically switching between built-in and external encoders balances low-delay distribution with higher-quality recording.
Successive link-state checks let a multimedia stream reader enter standby soon after the TV goes inactive, cutting network and power use.
Combines user-captured video with navigation images through input arbitration, enabling easy recording, retrieval, and editing with map information.
Camera-based tracking of hand and product motion flags self-checkout scan omissions and barcode misuse without costly weight sensors.
Spacer structures shield piezoelectric actuators during shadow mask deposition, preserving MEMS mirror yield and device integrity.
Independently controlled dimming blocks alter incoming light before sensing, making image privacy protection irreversible and harder to reverse engineer.
An image input arbitration scheme combines real-time camera video with navigation-linked images, enabling simpler recording, retrieval, and editing.
Interactive view controls let users choose or mix audio for each video stream in dual-view playback, reducing confusion on mobile devices.
Pre-stream prompt editing replaces manual word-board switching, improving cue accuracy and reducing live stream operating errors.
A camera motion trajectory adds spatial cues to video playback, helping users jump to relevant frames when time-based scrubbing is ineffective.
A negative-power aspherical first lens reduces center-of-gravity moment and thermal deformation to keep projection optics stable under intense light.
GAN-generated face replacement anonymizes stored video frames, removing recognizable facial PII while preserving realistic image quality.
An AV receiver shares real-time device status with a universal controller to adapt setup commands and avoid home theater configuration errors.
Viewer evaluation data filters live event images, making remote galleries more engaging and reducing manual photo selection.
Exposure-based correction reduces noise differences between dual-gain HDR images before compositing, improving final image quality.
A headless browser renders overlays onto still frames before video assembly, preserving object and geography data in standard exports.
Correlating acoustic feature images with object recognition helps pinpoint abnormal sound sources and verify events such as gas leaks.
Renders a 3D background from display-terminal relative position data, enabling home virtual production without dedicated studio equipment.
Adjusts DVS pixel integration by object speed, combining slow-motion frames to improve pixel density and reduce blur.
Neural depth mapping from dual-pixel images enables single-exposure background blur with clear foregrounds on mobile devices.
Tilt correction is adjusted by detected object type, preserving captured image resolution while correcting images that need stronger leveling.
Edited free-viewpoint video is turned into autopilot teaching files with text, graphics, and audio for automatic viewpoint playback.
Alternating long and short exposure RAW packets enable HDR synthesis while preserving resolution and signal-to-noise for preview, photos, and video.
Analyzing one recording stream and applying aligned redactions across other incident devices cuts review time while preserving sensitive data coverage.
Adaptive algorithm and frame-count selection cuts memory pressure in continuous multi-frame photography while keeping capture responsive.
When APL data drops out over wireless links, the receiver rebuilds it from stored image data to keep display output stable and reduce flicker.
Combining event signals with synchronized RGB frames isolates moving and static regions for faster, more accurate image processing.
Independent control of virtual sub-object depth, size, position, and timing enables more personalized AR content creation.
Scene metadata guides intonation adjustment in dubbed speech so character delivery matches scene context while preserving voice consistency.
Mode switching between low-power sampling and full activation cuts camera energy use while avoiding missed heat-triggered recordings.
Uses scaling offsets, projection-based reconstruction, and inter prediction to compress high-resolution 360-degree VR and AR image data more efficiently.
Shared transistors cut signal-line load capacitance, shortening settling time and improving pixel signal writing accuracy in active matrix displays.
Dynamic screen layout uses user location, ambient illuminance, and content emotion data to place and select content more effectively.
Reordering same-color RAW pixels lowers high-frequency components, preserving image quality during analog video transmission.
Receiver-reported RF data helps identify likely receivable ATSC 3.0 channels, cutting scan time while expanding reception coverage data.
Different colored test markers let projectors detect overlap regions faster and align projection areas more accurately.
Combines image data, subject detection, inference results, and model records in one file to improve association accuracy and workflow handling.
A private digital overlay lets presenters view notes and real-time guidance without breaking eye contact or exposing content to viewers.
AI-based subject location detection defines a meeting region and frames only participants, keeping non-participants out of the video feed.
Dual light modules with different brightness distributions are current-controlled to balance low-light capture and overexposure in wide-angle cameras.
Alternating display and capture timing lets 3D subject extraction run cleanly while surrounding screens show audience video in real time.
Customized excitation waveforms matched to camera weight and release-button position improve shake measurement accuracy across camera models.
Upper-lid pressure pre-compresses sealing rings against the reservoir and base, improving feeder sealing and preventing liquid leakage.
Gesture and facial recognition isolate a subject into a temporary array, enabling real-time interactive overlays on published digital content.
Using AR image capture and electronic tags, this case shows how server-based authentication unlocks digital assets with less product labeling.