Boundary conditions and curve midpoints are used to generate Bézier control points that reduce road mapping errors in autonomous driving simulation.
A failure determination unit checks whether map changes affect vehicle control, so updates occur only when truly needed.
Cameras and visual indicators identify similar cables and guide operators to the right rack ports, cutting installation errors and time.
Virtual obstacles added to map data steer autonomous vehicles away from narrow dead ends and rotation traps, improving navigation continuity.
Projects 3D point clouds into a 2D robot map by separating ground and obstacle data, preserving height-aware obstacle detection for navigation.
Separate update timing for obstacle and empty regions cuts map storage and computation while keeping mobile robot navigation responsive.
Flight history and skill-level analysis help match drone operators with suitable assistants for safer, more efficient flights.
Movement-weighted polling and echo responses improve indoor mapping accuracy by resolving ambiguous obstacle positions without beacon infrastructure.
Style-free layer comparison and discrepancy maps help select reliable source maps for accurate on-board display integration.
Revision details are exchanged as key values between user terminals to keep independently edited maps synchronized in real time.
Dividing 3D map data into height-based spatial units and assigning IDs simplifies routing and geofencing for flying objects.
This case uses user data and generative AI to estimate store trading areas and map their characteristics for more accurate analysis.
A marine display system overlays sonar images onto nautical charts using location data for simultaneous viewing.
Display control unit manages map and partial panoramic images across two screens using terminal tilt input.
A tile map service device dynamically merges image layers using alpha blending and caches results for rapid client delivery.
Hook and loop connector strips join detachable panels, resolving the trade-off between fixed structure complexity and user adaptability.
Generates accurate stereoscopic 3D visualizations for geographic areas lacking pre-existing data by applying collinearity relationships to 2D imagery.
A virtual map display system overlays game objects onto real-world maps.
A system constructs polyhedral nets by defining orthogonal coordinates on foldable material to draw precise fold lines for three-dimensional assembly.
A UAV-based guidebook system captures aerial sensor data to generate detailed course maps.
A topographic model kit uses a mold and casting compound to create realistic three-dimensional mining simulations for educational instruction.
A feature height-based colored image generating apparatus creates composite terrain maps using digital elevation models and surface inclination data.
Pre-weakened fold lines attach a detachable header panel to side panels, resolving storage issues caused by biased open corners.
A payment processing system generates targeted offers and displays redemption locations on a map.
Integrating a header panel into the gap between side panels resolves storage inefficiencies from separate purchases while maintaining presentation completeness.
A marine display system overlays live sonar imagery onto nautical charts to correlate underwater object positions with real-world watercraft location.
A computing device alters map detail levels independently of zoom via multiple display schemas.
A data fusion system transforms interaction data into interactive map visualizations using ontology-based classification.
A website system displays location information graphically on a map with icons to enable easy selection of detailed product data.