Offline ad caching lets mobile video apps preload targeted commercials, manage storage, and sync user interactions after playback.
Gyro-based camera stabilization and hollow cable routing keep security robot video clear while allowing smooth target-tracking rotation.
Motion sensor data and a neural transformation model compensate global frame motion, narrowing block-matching search areas for more efficient encoding.
Synchronizing background refresh with camera exposure windows prevents tearing and uneven illumination in virtual studio recording.
Display control information and layered streams keep video decoding continuous and gap-free when frame rates change at the receiver.
Removal detection from sensors, cameras, and ML disables touch and button input to prevent accidental processing outside the vehicle.
Multiple marker test images let a projector's built-in camera detect range, shape, and color errors for fast setup on irregular surfaces.
Residual tensile stress and edge-only support keep MEMS tunable mirrors flatter, improving spectral resolution while lowering actuation voltage.
Integrated sound generators vibrate the display panel to project sound forward, improving immersion, stereo effect, and layout flexibility.
Multiple shifted coded-aperture images are deconvolved and combined to improve image quality while avoiding bulky lens optics.
Automatic matching of main-stream resolution and frame rate to a return stream removes format conversion delays during video switching.
Integrated thermal imaging, video, and physiological sensing help firefighters monitor hazards and relay real-time data to command centers.
Sensors and software keep a selected image area fixed in orientation during camera movement, reducing blur and post-processing.
Real-time scene detection recommends and updates video recording modes on the preview interface, simplifying mode choice while covering diverse shooting needs.
Animation-based preview switching uses blur, opacity, and region scaling to avoid frame freezing between dual-camera shooting modes.
Multi-color lyric channels are staggered and overlaid on video frames to replace static text effects with synchronized, higher-impact visuals.
Brightness metadata and display capability feedback let a reproduction device map HDR video correctly on both standard and high-brightness monitors.
Controllable lens optics vary pixel beam width and direction in real time, improving virtual background capture and reducing post-processing.
Sub-pixel color ratios help correct distorted saturation pixel groups, improving HDR image quality and pixel value accuracy.
Selective linking of user images to event video sections boosts virtual participation while limiting unnecessary processing time.
Alternating illumination and waiting intervals let one image sensor capture multiple wavelength bands without beam splitters or extra sensors.
Simultaneous voltage and infrared sensing maps battery electrode potential and heat in situ, helping identify weak points for plating and cooling.
Aligns virtual-image white balance with real-scene lighting in video see-through HMDs, reducing color mismatch without manual color measurement.
Bounding boxes define object positions in start and end frames, enabling video generation that follows user motion intent more precisely.
Frame-by-frame HDR10 analysis adapts the tone mapping curve to preserve bright and dark scene detail when scene metadata is unavailable.
Columnar structures on a light-blocking portion intercept non-imaging light in compact camera modules, reducing flare and preserving image clarity.
Audio-guided latent encoding and generation changes video domains while preserving temporal consistency and semantic content.
Shared row and column lines in an RGBW pixel array enable separate white and color signal processing to avoid crosstalk and improve sensitivity.
Weighted composition tables let cameras switch shots automatically by target type, improving live event content quality while cutting labor cost.
Assistant designation metadata redirects speaker attribution from interpreters to the primary attendee in video meetings, captions, and transcripts.
Adaptive switching between multi-exposure HDR and single-shot multi-gain capture preserves image quality in bright, moving scenes.
A local touch display built into the rack cover cuts network latency, setup complexity, and workstation cost for video equipment control.
A touch-specified search range detects nearby content edges and aligns matching sides in composite video without distortion.
A lever-driven pedestal adjusts multiple camera module tilt angles at once, cutting manual setup time and keeping capture angles consistent.
Image feature feedback updates warping during camera handoff to reduce disparity and distortion from VCM, OIS, and thermal errors.
Independent white and narrow-band light ratios keep endoscope images bright, natural in color, and clear across varying distances.
Conical light-collecting protrusions narrow μ-LED emission angles to raise brightness and enable compact projection without noisy mechanics.
Continuous parallel recording with different shooting properties avoids stop-and-switch delays and helps preserve important moments.
Separating foreground and background capture cuts processing load and avoids patchy background colors in virtual viewpoint images.
Important dialogue is buffered and played at normal speed during fast-forward or rewind, preserving audio clarity without slowing video review.
Speech recognition matches spoken names to contacts, sending related images automatically and capturing the recipient's response.
Direct on-screen audio object controls let users adjust volume, timbre, and position in video for more intuitive sound editing.
Playback speed is adjusted by content segment to fit time constraints while preserving audio and video quality.
A hinged band and flexible electrical connection let the display fit different head sizes while keeping the viewing area clear.
Real-time clip marking with rewind capture and event labels cuts post-processing time and avoids sharing full recordings over the network.
ISP-based RGB-to-YUV preprocessing cuts mobile video file size and transmission energy while preserving useful data for cloud enhancement.
Near-real-time upload, shared annotation, and transcription reduce transfer delays, data loss, and isolated editing in video teams.
A NeRF scene model built from one real-world video enables realistic robot training simulation and improves zero-shot or few-shot transfer.
Multiple shifted-label models integrate importance scores so digest videos include key scenes and nearby related scenes more completely.
A sliding support inside the housing controls fold curvature to keep a larger flexible display aligned and prevent wiring disconnection or panel slip.