Random noise added to target coordinates simulates radar performance characteristics, enabling lower-cost tracking evaluation without physical radars.
A silicone kidney phantom with staged tumors enables realistic partial nephrectomy training with simpler setup and remote feedback.
Recorded driving video and steering data are synchronized to recreate autonomous vehicle motion without deploying a real vehicle.
A steer-by-wire steering input switches safely between road control and simulator use, preserving feedback while blocking real-world steering.
A workflow engine links flight and plane simulators to validate lesson steps accurately without relying on costly high-fidelity trainers.
Multi-sensor pose tracking keeps a VR cockpit replica aligned with physical controls while synchronizing haptic and visual feedback.
Large language models turn natural language into standardized MSDL military scenarios, cutting manual creation time and improving interoperability.
Physics-based haptic and 3D visual simulation helps train MSICS surgeons faster while safely practicing tissue interaction and complications.
Digital twin hazard simulation creates immersive industrial training scenarios that safely measure worker responses to anomalies and hazardous events.
Coded laser target data links real terrain and virtual missile views, improving positioning accuracy while reducing bandwidth.
Inflatable joint compartments and integrated sensory limits create adjustable age-impairment training with realistic movement restriction.
A magnetized rotor and conductive stator slow decommissioned spacecraft spin before capture, while non-ferromagnetic zones enable ground testing.
A counterweight, air bearing, and movable boom create stable 3D low-gravity simulation for longer, lower-cost rover and mobility testing.
Haptic force and vibration feedback recreate cutting kickback and metal shavings, making virtual machining training more realistic and accessible.
Virtual industrial asset simulations recreate hazardous events so workers can practice emergency response safely with performance feedback.
Interchangeable door modules and adjustable hinge pressure let responders train on varied forced-entry scenarios without destroying the frame.
A lightweight wing and pylon mockup uses removable support structures to create realistic cantilever aircraft maintenance training.
A heated replica of a spent fuel storage tank enables accurate thermal testing and realistic training for drying, welding, cutting, and retrieval.
A bounded chamber is kept in near-microgravity by upward fluid buoyancy, extending freefall simulation while limiting convective mixing.
Non-g force seating and real-time physiological feedback train pilots to manage g-force stress and lower G-LOC risk.
A rubric-driven serious game combines system dynamics and wargaming to objectively measure systems thinking and learning outcomes.
A shared input and communication interface lets simulator-trained commands carry over to real work machines despite differing operation specifications.
Remote users control virtual traffic participants to generate rare AD/ADAS test scenarios, cutting real-world testing time and cost.
Electronic coupling replaces mechanical linkages in flight simulators, enabling remote instructor control, force feedback, and lower simulator cost.
A mobile lab combines isolated poles, underground cabinets, and lineman meters to simulate EPZ grounding safely in realistic field training.
Internal momentum actuators and low-friction support let an untethered frame rotate freely in pitch, roll, and yaw for immersive simulation.
A neural network adds realistic virtual traffic objects to a driver's view and adapts scenario difficulty to improve reaction training.
Dynamic caller simulations adapt to responder input, improving realism, personalized feedback, and scalable emergency training.