Packaging CAD software generates realistic 3D carton models by calculating folding angles along curved creases.
Machine learning predicts correspondence between autonomous vehicle performance in simulated and real-world environments.
A CAD system projects surface entities onto a reference curve to regenerate the geometry.
A simulation platform builds a global background model from photometric data to localize lighting units and assess performance.
Selecting ply orientations to minimize warpage reduces shim usage and assembly gaps while maintaining structural strength.
A simulation system determines cylinder pressure and temperature to identify incomplete fuel oxidation products during combustion.
Automated plane detection and IFC property retrieval generate parametric structural design models from point clouds, reducing computational power requirements.
Digital foot scans create precise 3D replicas that enable online purchase of custom ski boots, eliminating in-person fitting time.
A double slot array antenna design method adjusts offset distances and sub-slot lengths to generate target azimuth beam patterns.
Convert subdivision curves to NURBS formats to resolve compatibility issues with classical CAD operators while maintaining design accuracy.
Geo-imaging irrigation design systems generate accurate field layouts and bills of materials, eliminating costly on-site measurement delays.
An anti-constraint system disables specific design rules to maintain consistent model behavior.
Software converts two-dimensional layouts into three-dimensional models to resolve accuracy and time trade-offs in home energy audits.
A manufacturing information estimation device calculates partial similarity between design CAD model data and registered part CAD model data to generate estimated process information.
Three synchronized exciters drive separate grinding drums to reduce mechanical loss and extend service life while maintaining high crushing efficiency.
A hybrid streaming system partitions a 3D scene into pixel and geometry segments to balance bandwidth usage.
Automated aircraft assembly system generates manufacturing plans using description logics and ontologies.
A graphical user interface enables selection and modification of parametric subassemblies to generate specific 3D cross-section geometries.
A clearance check program applies component attributes to select specific threshold values.
Integrated CAD tool creates angle-angle graphs from 3D geometry to verify clear view areas, replacing obsolete non-interactive software validation methods.
Automatic light arrangement parses house type images to generate realistic illumination using Post Process Volume parameters, reducing manual operation time.
Portable sensors capture localized conditions to build a digital twin, resolving measurement precision issues in non-homogeneous office layouts.
Segmenting the target hair area from an initial 3D head model reduces material waste and production time while ensuring a precise fit for custom hairpieces.
A CAD system detects user drag pauses to identify and suggest component mates automatically.
A vehicle mass estimation system uses tire pressure and wheel speed data to calculate load without extra sensors.
A computer system uses parametric cuboids to automate architectural design creation and rendering.
A design support device calculates statistical values from normal and violation CAD data to extract parameter ranges.
Axle counter data analysis identifies rail vehicle types through speed and distance measurements.
Dynamic nonlinear time-history analysis overcomes static method limitations by modeling diverse structures with high accuracy.
Optimized tensioner face compliance minimizes torque fluctuations and chain contact forces to reduce engine noise, vibration and harshness.
A brake test bench uses a Kalman filter to simulate rotatable body motion.
Automated wrapper generation bridges AUTOSAR software and formal verification tools, detecting hard-to-reach corner-case bugs that traditional methods miss.
A system calculates optimal sensor placement using meshed grid points and cost function minimization.
A computer-implemented method determines optimal element positions within a building space using machine learning models and geometric constraints.
A hybrid prediction method combines near-field CFD with far-field propagation models to estimate sonic boom signatures on the ground.
Interactive map overlay enables automatic icon movement based on entity properties, eliminating proprietary map costs and reducing development time.
A CAD update method retrieves cached sub-results for unchanged operands to accelerate model modification.
Segmenting components into finite elements captures spatial thickness variations, resolving inaccuracy caused by uniform modeling assumptions.
Digital surface modeling replaces manual inspection to reduce manufacturing cycle time while maintaining structural performance.
A system integrates CAD geometry with inspection data to analyze building facets.
A design engine generates architectural options using evolutionary algorithms.
A composite model updates structural integrity assessments using operational data and error indicators.
Assign kernels to threads to simulate dataflow graphs, reducing complexity of managing communication between different processing cores.
A reinforcement learning agent determines optimal semiconductor element positions using simulation-based reward signals.
A method calculates excavation volume by tracking tool motion trajectories with inertial and angle sensors.
Building model queries resolve entity relationships to generate dynamic MUD files, enabling scalable network security without manual reconfiguration.
A handheld measurement device combines a 2D scanner with an inertial measurement unit to capture coordinate data.