Design assist system displays thermal analysis results for substrates with current detection elements.
A node placement planning system uses structural rules to determine optimal node positions on a map.
Dispatching impedance matrix cells to node computers enables parallel processing of electronic design automation models.
A mobile system computes optimal green infrastructure sizes using geolocation and rainfall data.
A seismic yielding connector uses a U-shaped plate and yielding element to join panels to structural columns.
Multivariate optical computing systems decompose light signals into orthogonal components using spectral weighting and principal component analysis.
A visualization application overlays business intelligence data onto a 3D product model to associate collaboration details with specific parts.
Weather buffer model estimates airspeed parameters using steady flight conditions and extreme condition data to resolve pitot probe inaccuracies.
Automated system combines sensor data with as built records to create a virtual building model.
Laser projection system guides reinforcement layer placement on contoured molds to ensure precise panel alignment during fabrication.
A computer-implemented technique routes directed layered graph edges along orthogonal polylines within grid-defined pipes.
An automated design system generates structural models using building data and component libraries to create detailed MEP layouts.
A fluid transition route acquisition apparatus stores pattern transition information to acquire optimal flow paths between stable states.
A graph framework stores relational and non-relational reservoir simulation data as vertices and edges to unify analytics workflows.
A CAD system simulates assembly variation using overlay surfaces to identify contributing geometric elements.
A computer-implemented method creates section view cutting lines by automatically inferring geometric constraints from 3D model features.
Medial axis curve skeleton extraction reduces calculation costs by fitting local cross-section contours instead of global surfaces.
Spatial zones merge by size thresholds to establish a design-model, reducing administrative burden and improving energy distribution efficiency.
Vertex and marker controls configure pool geometry to resolve the trade-off between configuration speed and measurement precision in real-time cost estimation.
A simulation system uses portable agents with a contract mechanism to define consistent boundaries between software components and simulators.
Segmented command stacks and conflict detection prevent reference invalidation during collaborative design model edits.
Detecting touch duration on a touchscreen executes specific commands via visual and audible feedback.
Digital identifier marker blocks customize hierarchical tree structures to resolve complexity in automotive simulation models.
Neural networks segment paper cup images while correcting noise interference through iterative geometric constraints.
An interior layout apparatus acquires indoor structure information and analyzes user style input to generate automated design options.
Modifying drill string mass and stiffness alters vibratory mode shapes to mitigate high frequency torsional vibrations.
Analyzes seepage influence on temperature fields using hydro-thermal coupling models to optimize freezing pipe configurations for safer tunnel operations.
Semantic segmentation of 2D floor plans automates 3D model generation, eliminating manual intervention and error accumulation.
Calculation equation determines theoretical limits for light guide distance, input light amount, and output light amount to reduce trial production time.
A system assigns Product and Manufacturing Information to deficient CAD models by matching features against reference data.
A bypassable serialization adapter dynamically switches between parallel and serial modes to maintain data throughput in network-on-chip links.
Segmenting large-scale chip packaging power distribution networks into sub-regions to balance high-frequency accuracy with computational speed.
Orthogonal source and receiver encoding enables simultaneous inversion of seismic gathers, reducing computational costs while maintaining model accuracy.
A data center design method calculates expected peak power draw for multiple computers to maximize spatial layout efficiency.