Claims
- 1. A vehicle crash simulator comprising:
a simulation platform; a motion generator including a plurality of actuators translationally fixed to the simulation platform; and a motion controller configured to operate the plurality of actuators to impart a simulated crash motion or force to the simulation platform.
- 2. The vehicle crash simulator of claim 1 and further comprising the velocity generator coupled to the motion controller and configured to operate the velocity generator to impart a crash acceleration to the simulation platform.
- 3. The vehicle crash simulator of claim 2 wherein the simulation platform is on-board a base sled and the velocity generator is coupled to the base sled to accelerate or move the base sled to impart the crash acceleration to the simulation platform.
- 4. The vehicle crash simulator of claim 3 wherein the plurality of actuators are on-board the base sled and movable therewith along an acceleration stroke.
- 5. The vehicle crash simulator of claim 3 wherein the base sled is movable along a track formed of opposed spaced rails.
- 6. The vehicle crash simulator of claim 1 wherein the plurality of actuators are coupled to the simulation platform and configured to impart force and motion Fz along a z-axis of the simulation platform and one of force and motion Fy or force and motion Fx along x or y axes of the platform.
- 7. The vehicle crash simulator of claim 1 wherein the plurality of actuators are coupled to the simulation platform to impart a resultant force Fr or motion having multi-axis force components.
- 8. The vehicle crash simulator of claim 1 the plurality of actuators are coupled to opposed ends of the simulation platform and operable by the motion controller to impart a simulated crash acceleration.
- 9. The vehicle crash simulator of claim 1 including a plurality of actuators coupled to opposed sides of the simulation platform to simulate a force Fy along the y-axis and a plurality of actuators coupled to the simulation platform to simulate force Fz along the z-axis.
- 10. A vehicle crash simulator comprising:
a simulation platform; a motion generator including a plurality of actuators operably coupled to the simulation platform to impart a plurality of multi-axial forces Fz along a z-axis, Fx along an x-axis or Fy along a y-axis to the simulation platform; and a motion controller configured to operate the plurality of actuators to impart the plurality of multi-axial forces.
- 11. The vehicle crash simulator of claim 10 wherein the plurality of actuators are on-board a base sled and movable therewith along a track to simulate crash accelerations.
- 12. The vehicle crash simulator of claim 11 wherein the plurality of actuators are inclined between the base sled and the platform to impart a resultant Force Fr including a Fz force component and a force Fx or force Fy component.
- 13. The vehicle crash simulator of claim 10 wherein the plurality of actuators are operable to impart force Fz, force Fy and force Fx relative to x, y and z axes.
- 14. The vehicle crash simulator of claim 11 wherein the simulator includes a velocity generator to impart a crash acceleration pulse to the base sled.
- 15. The vehicle crash simulator of claim 11 wherein the simulation platform is coupled to the base sled via the plurality of actuators.
- 16. The vehicle crash simulator of claim 10 wherein the plurality of actuators impart force Fx along the x-axis to simulate crash accelerations and force Fz and force Fy to simulate crash motions.
- 17. A vehicle crash simulator comprising:
a simulation platform; a simulator configured to impart acceleration or force to the simulation platform to simulate crash accelerations or motions; and a video imaging system including a video camera to capture an image of a simulated crash event to control operation of the simulator.
- 18. The crash simulator of claim 17 wherein the video imaging system includes an image processor to provide acceleration or motion feedback to the simulator.
- 19. A method for simulating a vehicle crash comprising the steps of:
simulating a crash acceleration pulse by accelerating a base sled having a platform carried on board the base sled; and simulating crash forces or motions through a plurality of actuators on board the base sled.
- 20. The method of claim 19 wherein the crash acceleration and the crash forces or motions are simulated based upon feedback from a video imaging system to control the plurality of actuators.
- 21. The method of claim 19 wherein the step of simulating the crash forces or motions simulates motion relative to six degrees of freedom.
- 22. A method for simulating a vehicle crash comprising the steps of:
controlling a plurality of actuators connected to a simulation platform to impart force to the simulation platform along multiple x, y or z axes to simulate crash acceleration or motions.
- 23. The method of claim 22 wherein the step of simulating crash acceleration or motions comprises:
actuating the plurality of actuators to impart multiple forces, force Fz, force Fx or force Fy to the simulation platform.
- 24. The method of claim 22 wherein the step of simulating crash forces or motions simulates pitch, yaw and roll motion of a vehicle crash.
- 25. The method of claim 22 and further comprising the step of:
accelerating a base sled carrying the simulation platform to simulate crash acceleration.
- 26. The method of claim 22 wherein the step of controlling the plurality of actuators provides a force Fx to simulate a crash acceleration.
Parent Case Info
[0001] The present application is based on and claims the benefit of U.S. provisional patent application Ser. No. 60/458,275, filed Mar. 28, 2003, the content of which is hereby incorporated by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60458275 |
Mar 2003 |
US |