Claims
- 1. A speed reduction system for decreasing the speed of a moving craft, comprising a craft engaging device, a control mechanism, and a hydraulic energy transfer system adapted to transmit energy from said craft engaging device to said control mechanism, and said control mechanism being adapted to actively control release of energy from said hydraulic energy transfer system during said decrease of the speed of the craft.
- 2. The system of claim 1, further comprising a feed-back apparatus including sensors for sensing conditions within the speed reduction system and providing data to be used in controllably releasing energy from said hydraulic energy transfer system during said decrease of the speed of the craft.
- 3. The system of claim 2, further comprising a controller arranged to utilize said data provided by said feed-back apparatus to control the operation of said control mechanism during said decrease of the speed of the craft.
- 4. The system of claim 1, wherein said hydraulic energy transfer system comprises at least one conduit containing hydraulic fluid.
- 5. The system of claim 4, further comprising at least one sensor arranged to sense the pressure of the hydraulic fluid within said at least one conduit.
- 6. The system of claim 4, including a ram connected to said craft engaging device for applying pressure to the hydraulic fluid.
- 7. The system of claim 6, further comprising at least one sensor arranged to sense the position of said ram.
- 8. The system of claim 4, wherein said at least one conduit is connected to said control mechanism, said control mechanism comprising a valve having a valve member for controlling the flow of the hydraulic fluid within said hydraulic energy transfer system.
- 9. The system of claim 8, further comprising at least one sensor arranged to sense the position of said valve member.
- 10. The system of claim 1, further comprising a controller comprising a computer having a processor adapted to evaluate a condition of the system during a speed reduction cycle, said controller being adapted to control the release of energy from the energy transfer system.
- 11. The system of claim 10, wherein said computer includes a memory storage device arranged for interaction with said processor, said memory storage device including data comprising a predetermined profile determining a desired condition during said cycle.
- 12. The system of claim 11, wherein said profile determines a desired position of the craft at a given point in time during said cycle.
- 13. The system of claim 11, wherein said profile determines a desired pressure of the hydraulic fluid within said energy transfer system at a given point in time during said cycle.
- 14. The system of claim 11, wherein said controller determines an adjustment in the operation of said control mechanism to control said decrease in the speed of the craft according to said profile.
- 15. The system of claim 1, wherein said control mechanism comprises a valve having a valve member and an actuator connected to said valve member.
- 16. The system of claim 15, wherein said valve member is arranged with respect to said energy transfer system to substantially balance the forces on said valve member exerted thereupon by said energy transfer system.
- 17. The system of claim 16, further comprising a first driver and a second driver arranged with said valve member so that said first driver and said second driver are alternately engageable with said valve member.
- 18. The system of claim 17, further comprising a plurality of sensors arranged to detect the inoperability of said first driver, said second driver or both.
- 19. The system of claim 17, further comprising a controller connected to said first driver and said second driver, said controller being adapted to, in the event that said first driver is inoperable, engage said second driver with said valve member.
- 20. The system of claim 8, further comprising a driver adapted to move said valve member during said decrease of the speed of the craft.
- 21. The system of claim 1, wherein said control mechanism comprises a valve having a valve member and further comprising a controller adapted to determine a desired position of said valve member for directly controlling the release of energy from said hydraulic energy transfer system.
- 22. A method of controlling the operation of a valve, comprising automatically determining a condition; automatically comparing the condition to a desired condition determined by a profile; automatically determining an adjustment to the valve; and adjusting the valve during the operation of the valve.
- 23. The method of claim 22, wherein the step of automatically determining the condition comprises sensing the pressure at an inlet of the valve.
- 24. The method of claim 22, wherein the step of automatically determining the condition comprises sensing the position of a valve member of the valve.
- 25. The method of claim 22, wherein the profile determines desired conditions for a desired reduction in speed of a moving craft during a predetermined cycle.
- 26. The method of claim 25, wherein the step of comparing comprises comparing the condition to a profile for determining a desired position of the craft at a point during the cycle.
- 27. The method of claim 25, wherein the profile determines the desired conditions for a plurality of points during the cycle for achieving a desired reduction in speed for a predetermined stopping distance.
- 28. The method of claim 22, wherein the step of adjusting the valve comprises moving a valve member of the valve to a position determined by the profile.
- 29. The method of claim 22, wherein the steps of automatically determining the condition, automatically determining an adjustment and adjusting the valve comprise repeatedly monitoring the condition determining an adjustment and adjusting the valve.
- 30. The method of claim 22, further comprising receiving data concerning a value to be used in determining the adjustment, the value being selected from the group consisting of: the type of craft, the speed of the craft, and the weight of the craft.
- 31. The method of claim 22, further comprising selecting the profile from a plurality of profiles.
- 32. The method of claim 31, wherein the profile is selected depending upon a value selected from the group consisting of: the type of craft, the speed of the craft and the weight of the craft.
- 33. The method of claim 22, further comprising testing the operability of the valve.
- 34. The method of claim 22, further comprising determining the operability of at least one driver for driving movement of a valve member of the valve.
- 35. The method of claim 34, wherein the at least one driver comprises a first driver and a second driver and further comprising, in the event that the first driver is inoperable, connecting the second driver to the valve member.
- 36. A hydraulic valve, comprising:
a) a housing defining an inlet and an outlet; b) a valve member movable between a closed position, said inlet being blocked when said valve member is in said closed position, and an open position, said inlet communicating with said outlet when said valve member is in said open position; c) said valve member defining a passage communicating with a chamber adjacent said valve member and arranged to balance the force of the fluid pressure acting on said valve member at said inlet; and d) an actuator for moving said valve member, said actuator being connected to said valve member.
- 37. The valve of claim 36, wherein said inlet is adjacent to said outlet and said chamber is disposed on an opposite side of said valve member from said inlet.
- 38. The valve of claim 36, wherein said passage communicates with said inlet.
- 39. The valve of claim 36, further comprising a driver connected to said actuator.
- 40. The valve of claim 38, wherein said valve member has an inlet-facing surface and a balancing surface opposite the inlet-facing surface, said balancing surface being disposed at said chamber, a surface area of said inlet-facing surface and a surface area of said balancing surface being sized so as to minimize the force required to move said valve member.
- 41. The valve of claim 36, wherein said actuator comprises a first member and a second member, said first member being connected to said valve member and being linearly movable for moving said valve member to a position between said open position and said closed position.
- 42. The valve of claim 41, further comprising a driver is connected to said second member and said first member is connected to said second member.
- 43. The valve of claim 42, wherein said second member comprises a central gear and said driver comprises a first driver assembled with said central gear; and further comprising a second driver assembled with said central gear; said central gear being adapted to alternately connect with said first driver or said second driver.
- 44. The valve of claim 36, wherein said valve member comprises a sleeve and further comprising a second element forming a seat with said sleeve.
- 45. The valve of claim 44, wherein said sleeve includes a skirt, said passage being defined in said skirt.
- 46. The valve of claim 45, wherein said sleeve defines an opening communicating with said inlet and said outlet.
- 47. The valve of claim 46, wherein said passage is disposed outwardly of said opening.
- 48. The valve of claim 45, wherein said skirt incorporates a surface for forming said seat.
- 49. The valve of claim 44, wherein said actuator comprises a first shaft extending in a first direction and connected to a second shaft extending in a second direction, said second shaft being connected to said sleeve.
- 50. A valve control system for controlling the operation of a valve, comprising:
a) at least one sensor for sensing a sensed condition; b) a controller arranged to actively control operation of the valve during a predetermined cycle according to a predetermined profile determining a desired condition during said cycle; and d) a driver arranged with said controller and adapted to move the valve to a position; e) said position of the valve being adjusted during said cycle to conform said sensed condition to said desired condition.
- 51. The system of claim 50, wherein said at least one sensor comprises a sensor arranged for sensing said sensed condition, said sensed condition being selected from a group of conditions consisting of: a pressure at an inlet of the valve, and said position of the valve.
- 52. The system of claim 50, wherein said controller comprises a computer adapted to receive data from said at least one sensor concerning said sensed condition.
- 53. The system of claim 52, wherein said controller includes a memory storage device in which said profile is stored.
- 54. The system of claim 53, wherein said controller includes a processor under control of programs and a program executable by said processor, said program being adapted to compare said sensed condition with said desired condition.
- 55. The system of claim 54, wherein said program is arranged to determine an adjustment to said position of the valve, based upon said profile.
- 56. The system of claim 52, wherein said controller communicates with a driver adapted to move a valve member of the valve to an adjusted position determined by said profile.
- 57. The system of claim 50, wherein said profile determines said desired condition so as to achieve a decrease in the speed of a moving craft.
- 58. The system of claim 50, wherein said sensed condition comprises a first sensed condition, said controller being arranged to accept said first sensed condition from said at least one sensor, communicate with a driver so as to adjust said position of the valve, accept a second sensed condition from said at least one sensor and readjust said position of the valve.
- 59. The system of claim 58, wherein said desired condition comprises a first desired condition determined by said profile for a first point in time during said cycle and wherein said profile determines a second desired condition for a second point in time during said cycle.
- 60. The system of claim 50, further comprising a first driver and a second driver, said first driver and said second driver being alternately connectible with the valve and controlled by said controller, and further comprising a first monitor and a second monitor.
- 61. The system of claim 60, wherein said controller comprises a first controller and further comprising a first monitor for receiving data from said at least one sensor.
- 62. The system of claim 61, wherein said first driver, said first monitor and said first controller comprise a first channel, and further comprising a second controller and a second monitor, said second driver and said second monitor being arranged with said second controller.
- 63. The system of claim 62, wherein said at least one sensor comprises at least one first sensor and at least one second sensor, said at least one first sensor being connected to said first monitor and said first controller and said at least one second sensor being connected to said second monitor and said second controller.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/354,054, filed Jan. 31, 2002, and U.S. Provisional Application No. 60/376,094, filed Apr. 26, 2002, the disclosures of which are both hereby incorporated by reference herein.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60354054 |
Jan 2002 |
US |
|
60376094 |
Apr 2002 |
US |