See how movable foils with passive flow control mechanisms mitigate mean flow and currents to g
See how a motorized base with driven belts and pivoting wheel assemblies replicates vehicle mot
See how a transmission mechanism converts horizontal actuator motion into vertical platform mov
See how communicators in storage areas track interactive objects and link guest profiles to tri
See how a transmission mechanism converts horizontal actuator motion into vertical platform mov
See how a motion simulator uses two actuators with strategic base positioning to achieve full 3
See how articulated bed segments with independent actuators simulate six-degree-of-freedom moti
See how a water vane in the chamber passageway mitigates eddy currents and turbulence, enabling
See how a linear actuator uses a travelling nut, liner with longitudinal grooves, and taper-loc
See how real-time operator movement capture replaces pre-encoded motion tracks to synchronize v
See how a wave dampening chamber with perforated raised floor absorbs wave energy and reduces r
See how rotating magnets in pockets enable magnetic mats to self-align and reconfigure into com
See how three electric cylinders with joint bearings replace hydraulic systems to reduce comple
See how a serpentine-moving barrier pushes water toward reefs in two directions, generating hig
See how a buoyant plunger oscillating at natural frequency generates concentric waves with mini
See how a sliding support arm and waist ring enable squatting and running in VR while adapting
See how RF-based centralized control enables simultaneous positioning of multiple reclining the
See how integrating handwash stations with themed play attractions and motion-activated dispens
See how glass-windowed compartment walls separate play and dining areas, enabling children's in
See how a moving foil replaces mechanical paddles to generate surfable waves with ocean-like ch
See how curvilinear foils moved through deep water generate controlled surface gravity waves th
See how a cart with wheels rolling over an uneven conveyor belt replicates vehicle motion to so
See how armrest-mounted nozzles deliver synchronized water, scent, and air effects in motion se
See how rotating curvilinear foils with orbital motion generate surfable waves by improving ene
See how a circular motion base platform synchronizes with a 360-degree curved screen to enhance
A submerged curved foil moves along a track to transfer energy efficiently and generate consistent, rideable waves in open water.
A contoured channel, moving submerged foil, and passive flow control generate longer, surfable breaking waves with stable shape and ride duration.
A submerged curvilinear foil moving along a track generates longer, surfable waves with better energy transfer and fewer trailing oscillations.
Armrest-mounted nozzles keep air, water, and scent effects aligned with moving seats while reducing theater fan noise and installation complexity.
Vertically moving curved foils transfer energy efficiently to form ocean-like surf waves with longer ride duration in a contoured pool.
Segmented table-cover panels with movable openings and transparent regions create a stable enclosed play space that supports imaginative play.
Independent headrest, armrest, and tactile actuators create realistic motion illusions without a complex moving platform.
Vertically moving curved foils and a sloped pool bottom generate longer, rideable breaking waves with lower drag and more ocean-like surf.
Vertically moving curved foils and a sloped pool bottom improve energy transfer to create consistent, rideable surf waves.
A rotating, pitching, and rolling seating platform syncs with a 360° screen and effects to turn static cinema viewing into immersive motion media.
Armrest-mounted nozzles move with the seat to deliver timed air, scent, and atomized water effects without noisy external fans.
Movable walkways and handrails retract during motion simulation to reduce sensory distraction while preserving easy passenger access.
Vertically moving side-wall foils and a sloped pool bottom create rideable surf waves with controlled breaker type and improved energy transfer.
Slip-gripped multilayer films form a coplanar reflective beam-splitter that preserves brightness and stability on stage-scale displays.
A flat middle section and round end regions help this cable resist bending, twisting, and stretching while maintaining reliable signal transmission.
Location-aware control identifies each electronic post in its receptacle and adjusts power delivery for flexible park installation and operation.
A control system detects each electronic post location in its base receptacle and routes power accordingly to improve park operation.
Infrared projected paths let ride vehicles vary route and thrill level without mechanical guides, reducing wear while preserving immersive visuals.
Infrared path projections guide ride vehicles without mechanical switches, reducing wear while enabling dynamic routing and safe traffic flow.
A planet assembly with spring-preloaded gears transmits steering road feel directly while maintaining high torque without delay or jitter.
Real-time sensing and motion adjustment enable safe handoff of show structures between moving ride components without fixed motion profiles.
A suspended winch-and-rotary motion assembly adds synchronized 3D body movement and damping to make simulated environments feel more realistic.
Projected infrared paths let ride vehicles follow changing routes with automated control, improving safety and reducing physical track changes.
Infrared projections define switchable ride paths that onboard sensors follow, enabling safer automated navigation with less mechanical wear.
Dynamic dispatch on intersecting paths lets trackless ride vehicles bypass delays, maintain intervals, and reduce loading backlogs.
Retractable inflatable columns and a hexagonal beam roof enable fast reconfiguration into mazes, arenas, or escape rooms without added framing.
Real-time ride status, throughput, and history are combined to predict attraction wait times and balance guest flow across multiple rides.
Interchangeable connectors let inflatable members assemble fast, share airflow, and form stable reconfigurable supports for shelters and molds.
Sensor-driven control checks closed-loop water quality before water effects operate, reducing potable water use and unsafe guest exposure.
Elasticly supported movable members and coordinated drive units create varied tactile sensations in a compact haptic mechanism.
RFID-linked interactive attractions use live crowd metrics to reroute guests, cut wait times, and schedule maintenance with less disruption.
Independent lifting and jointed seat rows replace complex hexapod motion to boost throughput, simplify boarding, and reduce ride footprint.
A lifted seat row separates boarding from motion simulation, reducing ride complexity, saving space, and improving passenger flow.
Standardized deck modules combine lift actuators and sensory effects to deliver immersive venue experiences with faster setup and less custom integration.
Sensor-driven AI entities adapt displays, lighting, and sound to each guest, enabling more immersive park interactions without unmanageable complexity.
A dual-tunnel airflow layout simulates ski jumps and wingsuit flights in low buildings without deep excavation.
A concave leading surface and tapered trailing foil generate long surfable waves while limiting drag and trailing oscillations.
A hidden carrier coordinates limb motion and platform translation so an animated figure appears to walk without visible actuators.
Real-time guest data drives activity commands and interactive elements to ease attraction congestion, cut waits, and manage maintenance.
A mediated crane station lets riders lift and reposition heavy objects while feedback controls and motion limits maintain safe operation.
Air-fed lift replaces perimeter weights so the inflatable fort keeps its shape while allowing easier entry, exit, and movement on flat surfaces.
A controller distorts virtual imagery to match real optical effects through a beam splitter, making attraction scenes more immersive and realistic.
Duplicate show elements on a rotatable beam let one present while the other resets, cutting run-reset time for complete ride motion profiles.
Controlled air ingress and chamber timing reduce turbulence and oscillations while producing stable, customizable pool waves.
Real-time guest interaction data drives AR images and physical effects, turning static theme park spaces into adaptive environments.
Projected content camouflages nearby ride vehicles, raising attraction throughput while preserving rider immersion without complex track changes.
A beam splitter and controller pre-distort virtual imagery from real-object distortion data to create more realistic attraction effects.
Guest activity recognition drives ride vehicle AI entities that trigger onboard features for personalized, immersive park interactions.
Infrared sensing maps a guest's vascular structure for projected body animations, improving immersion without contact-based detection.
A single projector and rotating mirror create multi-surface attraction imagery, cutting projector count while enabling interactive immersion.
Closed-loop vehicle vibration control uses body feedback to match target waveforms from audiovisual content while preventing damage.
Angled air holes use inflation airflow to create smooth rotation, removing external motors while preserving air tightness and lowering weight.
Interchangeable connectors and inflatable members enable compact storage, fast assembly, repairable joints, and stable customizable structures.
A translucent scrim extends projected 3D objects beyond an opaque surface, reducing flattening and distortion in compact show spaces.
Coordinated limb and carrier actuation creates a realistic walking illusion while concealing mechanics that would otherwise break immersion.
Sensors capture real scenery and map matching virtual elements, reducing special effects complexity while preserving attraction immersion.
Sensors and adaptive show control synchronize assistive audio, visual, or tactile content with ride position and guest disability needs.
A rotating flat plate and height sensor switch VR content at the inverted position to create a stronger falling sensation with simple mechanics.
Sensor-guided air ingress controls chamber water release to limit eddy currents and turbulence while producing stable, customizable surf waves.
A reflective layout turns a gravity-released real object into a virtual moving image, creating immersive effects in compact attraction space.