PredictEV software estimates electric vehicle charging demand to optimize station placement, reducing infrastructure planning inefficiencies.
A work support device generates user-specific images by determining whether object manipulation applies to other users based on sound and schedule data.
Hierarchical tree structures organize massive 3D object sets using shape signatures, resolving annotation bottlenecks and improving classification speed.
Encoder-generator models map designs to latent space for objective style metric calculation, reducing subjective evaluation time.
A lattice cell modification engine adds behavior adjustment structures to beams, enabling dynamic stiffness changes.
A method evaluates local buckling performance of steel pipes by comparing critical strain with the starting strain of strain-hardening.
Virtual segmentation of 3D object representations enables precise part-based model retrieval.
Nested sub-nodes in a resource list expose intermediate geometry relationships, allowing direct modification without complex display restructuring.
Transforms STL files into signed distance fields to identify internal features, resolving the trade-off between processing simplicity and detection capability.
A multi-configuration massive model system compares vehicle parts to identify common and unique components across different configurations.
Modifying two-dimensional sketch constraints adjusts geometry in the input plane, resolving gaps that appear when refining three-dimensional models.
A cable modeling method uses dynamic control points to simulate sag in Autodesk Revit, enabling accurate geometric representation.
A time-discrete selective state space model determines output signals from sensor inputs to control vehicle actuators.
Evaluates autonomous vehicle planner performance by comparing ego trajectories against reference planners to identify significant divergence points.
Automated cement blend design adjusts formulations based on real-time drilling data to match wellbore conditions.
An interactive datasheet system updates product models in real time as users adjust characteristic values on a computing device.
Probabilistic finite element analysis resolves reliability contradictions by quantifying multi-factor coupling effects on bridge structural integrity.
A model generator creates simplified approximations by replicating essential relations from complex non-embedded models.
A package design file includes variable cut and fold line definitions with alternate parameters to adapt to different substrate thicknesses.
A machine learning device predicts molding shrinkage ratios using supervised learning on resin and process data.
Automated steel joint detailing system extracts structural parameters and applies connection rules to generate engineering drawings.
Constrains correlated signal toggling to reduce pessimistic simulation errors and improve accuracy in dynamic voltage drop analysis.
A directed acyclic graph identifies nodes impacting a modeled object to update only necessary data.
A product packaging model system automates kit assembly verification using 3D modeling and image recognition.
Hierarchical conditioning segments modeling into scale levels to resolve geologic realism versus parameter management complexity.
Iterative topology optimization generates load-bearing trusses by adjusting node positions and beam connectivity.
A data processing system acquires on-site investigation data to adjust article dimensions and design.
A honeycomb design method uses effective height and horizontal separation parameters to control shear stiffness and flexibility in tire shear layers.
Fuzzy logic and CFD optimize blade geometry to reduce noise while maintaining required thrust.
Segmenting information into discrete layers allows selective display in a common region, reducing file size while maintaining complex data accessibility.
Surrogate models approximate complex physics-based simulations to update digital twins, reducing execution time while maintaining measurement precision.
A deformation-based curved mesh generation system constructs accurate meshes by projecting linear elements onto target geometries.
A design engine consolidates mechanical assembly components into single integrated geometry using generative algorithms.
Detail locating apparatus generates navigation instructions to align with mark points using digital image analysis.
Property Optimization Algorithm generates architectural models by evaluating geometric outputs against site regulations.
A software system identifies firestop products for building penetrations to maintain barrier integrity.
A modeling graph structure manages procedural and live relationships in 3D CAD systems through directed arcs.
Information processing device updates component and wiring lists to define circuit terminals.
Simulation model generates material characteristics from thermal gradient and cooling rate inputs for additive manufacturing.
Scan-based geometry aligns point cloud data with CAD models to quantify geometric differences and validate rotorcraft component performance.
A natural language modeling system generates three-dimensional scenes by analyzing user requests and mapping them to semantic scene graphs.
A parametric feature recipe converts editable smooth surfaces into watertight boundary representation models within a CAD interface.
A system allocates computer models to logical positions using configuration constraints to link part data with geometric information.
A computational method solves structural dynamic equations using the Sherman-Morrison-Woodbury formula to incorporate modal damping directly in physical coordinates.
Segmented 3D printed footwear adapters match specific foot geometry to prevent rubbing and alleviate discomfort from bunions or tendon swelling.
Hash table queries checksums to generate soft links for existing reservoir model structural data.
A wing-mounted turbine extracts kinetic energy from trailing vortices to generate electrical power.
Routing-aware placement filters candidate block locations based on pin access and via costs to eliminate double vias and improve routability.
Force-directed algorithm calculates optimal branch positions to reduce on-chip variation in high-density semiconductor chips.