Patent classifications
A63G31/08
MOTION SIMULATION AMUSEMENT PARK ATTRACTION
A motion simulator ride assembly includes a motion base and a rider support assembly positioned beneath and coupled to the motion base. The rider support assembly includes a plurality of rider support units, each rider support unit of the one or more rider support units having an inversion table having a surface that may abut a rider. The inversion table may rotate about an axis to transition between a loading configuration and a ride configuration and the ride configuration positions the rider in a substantially facedown position. Each rider support unit also includes a restraint system that may secure the rider onto the inversion table. The restraint system includes a first moveable restraint and a second moveable restraint that are each coupled to the inversion table and the first and second moveable restraints may move relative to the surface to move the first and second movable restraints from an unrestrained configuration to a restrained configuration. The motion simulator ride assembly also includes a display screen that may project a simulated environment. The display screen is positioned below the motion base.
Object movement control apparatus and method
Described herein is an apparatus and method to convey an object through the air in a controlled and repeatable manner. The apparatus may comprise an object attached to at least one resilient member, the resilient member or members constraining object movement in a substantially vertical y-axis direction. The apparatus may also comprise at least one support member coupled to the at least one resilient member, and the support member or members constrain object movement in a substantially horizontal x-axis direction. In use, the resilient member is energized, movement initiated, and object movement then occurs in both an x-axis and y-axis direction, the movement path substantially governed by the resilient member(s) and the support member(s). The apparatus and method may allow the object to experience a variety of movement sensations, one being the feeling of flight or gliding.
Trackless vehicle and system for synchronous control of trackless vehicle
A motion assembly that produces pitch and roll motions includes lower and upper plates. A pivotable coupling having upper and lower shafts extending from its center is coupled between the upper and lower plates. At least two linear actuators are coupled between the plates. Extension and retraction of the actuators pivots the upper plate about the pivotable coupling relative to the lower plate. A vehicle includes two steerable propulsion wheels coupled to a chassis. A lower plate of a pitch and roll assembly, similar to that just described, couples to the chassis via a slew bearing. Seating is coupled to the upper plate. The seating rotates with respect to the chassis via controlled rotation of the slew bearing with reference to the chassis. The seating can be rotated to point in any direction with respect to the chassis regardless of the direction the steerable propulsion wheels move the chassis.
Trackless vehicle and system for synchronous control of trackless vehicle
A motion assembly that produces pitch and roll motions includes lower and upper plates. A pivotable coupling having upper and lower shafts extending from its center is coupled between the upper and lower plates. At least two linear actuators are coupled between the plates. Extension and retraction of the actuators pivots the upper plate about the pivotable coupling relative to the lower plate. A vehicle includes two steerable propulsion wheels coupled to a chassis. A lower plate of a pitch and roll assembly, similar to that just described, couples to the chassis via a slew bearing. Seating is coupled to the upper plate. The seating rotates with respect to the chassis via controlled rotation of the slew bearing with reference to the chassis. The seating can be rotated to point in any direction with respect to the chassis regardless of the direction the steerable propulsion wheels move the chassis.
Trackless Vehicle and System For Synchronous Control Of Trackless Vehicle
A motion assembly that produces pitch and roll motions includes lower and upper plates. A pivotable coupling having upper and lower shafts extending from its center is coupled between the upper and lower plates. At least two linear actuators are coupled between the plates. Extension and retraction of the actuators pivots the upper plate about the pivotable coupling relative to the lower plate. A vehicle includes two steerable propulsion wheels coupled to a chassis. A lower plate of a pitch and roll assembly, similar to that just described, couples to the chassis via a slew bearing. Seating is coupled to the upper plate. The seating rotates with respect to the chassis via controlled rotation of the slew bearing with reference to the chassis. The seating can be rotated to point in any direction with respect to the chassis regardless of the direction the steerable propulsion wheels move the chassis.
Trackless Vehicle and System For Synchronous Control Of Trackless Vehicle
A motion assembly that produces pitch and roll motions includes lower and upper plates. A pivotable coupling having upper and lower shafts extending from its center is coupled between the upper and lower plates. At least two linear actuators are coupled between the plates. Extension and retraction of the actuators pivots the upper plate about the pivotable coupling relative to the lower plate. A vehicle includes two steerable propulsion wheels coupled to a chassis. A lower plate of a pitch and roll assembly, similar to that just described, couples to the chassis via a slew bearing. Seating is coupled to the upper plate. The seating rotates with respect to the chassis via controlled rotation of the slew bearing with reference to the chassis. The seating can be rotated to point in any direction with respect to the chassis regardless of the direction the steerable propulsion wheels move the chassis.
OBJECT MOVEMENT CONTROL APPARATUS AND METHOD
Described herein is an apparatus and method to convey an object through the air in a controlled and repeatable manner. The apparatus may comprise an object attached to at least one resilient member, the resilient member or members constraining object movement in a substantially vertical y-axis direction. The apparatus may also comprise at least one support member coupled to the at least one resilient member, and the support member or members constrain object movement in a substantially horizontal x-axis direction. In use, the resilient member is energised, movement initiated, and object movement then occurs in both an x-axis and y-axis direction, the movement path substantially governed by the resilient member(s) and the support member(s). The apparatus and method may allow the object to experience a variety of movement sensations, one being the feeling of flight or gliding.
RIDE SYSTEM HAVING AN ARTICULATING ARM
A ride system may include a ride vehicle configured to move along a ride path adjacent a track, and an arm coupled to the ride vehicle. The ride vehicle may be movable separately from the arm. The ride vehicle may include features to support the ride vehicle on a ride surface of the ride path, such that the ride vehicle may follow the ride's terrain. The arm may articulate (e.g., move between positions) to adjust a position of the ride vehicle relative to the ride path. The arm may adjust the lateral and/or vertical position of the ride vehicle along the ride. The ride system may include a chassis coupled to the track, and the arm may be coupled to the chassis. The arm may be extendable and pivotable relative to the chassis, such as to adjust the position of the ride vehicle as the chassis rides along the track.
RIDE SYSTEM HAVING AN ARTICULATING ARM
A ride system may include a ride vehicle configured to move along a ride path adjacent a track, and an arm coupled to the ride vehicle. The ride vehicle may be movable separately from the arm. The ride vehicle may include features to support the ride vehicle on a ride surface of the ride path, such that the ride vehicle may follow the ride's terrain. The arm may articulate (e.g., move between positions) to adjust a position of the ride vehicle relative to the ride path. The arm may adjust the lateral and/or vertical position of the ride vehicle along the ride. The ride system may include a chassis coupled to the track, and the arm may be coupled to the chassis. The arm may be extendable and pivotable relative to the chassis, such as to adjust the position of the ride vehicle as the chassis rides along the track.