Claims
- 1. A method of operating a retarder control system that controls operation of a drivetrain retarder of a vehicle, said method comprising the step of:
(a) the retarder control system controlling the resistance level and/or the operational state at which the drivetrain retarder is operated based at least partially upon one or more factors selected from a group consisting of speeds of one or more drivetrain components, vehicle speed, rotational speed of one or more undriven wheels, position of a brake control member, elapsed time of activation of a brake control member and elapsed time from a change in a selected resistance level at which the retarder control system is commanded to effect operation of the drivetrain retarder.
- 2. The method of operating a retarder control system of claim 1, wherein:
(a) said method of operating a retarder control system comprises a progressive transition method which comprises the steps of:
the retarder control system causing the resistance level, at which the drivetrain retarder is operated, to automatically step operation of the drivetrain retarder through one or more intermediate resistance levels when transitioning a resistance level at which the drivetrain retarder is operated from a starting resistance level to an ending resistance level between which said intermediate resistance levels are present.
- 3. The method of operating a retarder control system of claim 2, wherein:
(a) said progressive transition method more specifically comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time the drivetrain retarder is activated to an ending resistance level between which and a starting resistance level there are intermediate resistance levels, the retarder control system automatically transitioning the resistance level at which the drivetrain retarder is operated through one or more of said intermediate resistance levels.
- 4. The method of operating a retarder control system of claim 3, wherein:
(a) said progressive transition method further comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time the drivetrain retarder is deactivated from operation at a starting resistance level between which and an ending resistance level there are one or more intermediate resistance levels, the retarder control system automatically transitioning the resistance level at which the drivetrain retarder is operated through one or more of said intermediate resistance levels.
- 5. The method of operating a retarder control system of claim 4, wherein:
(a) said progressive transition method more specifically comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time the drivetrain retarder is transitioned from operation at a starting resistance level between which and an ending resistance level there are one or more intermediate resistance levels, the retarder control system automatically transitioning the resistance level at which the drivetrain retarder is operated through one or more of said intermediate resistance levels.
- 6. The method of operating a retarder control system of claim 5, wherein:
(a) said progressive transition method more specifically comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time the drivetrain retarder is transitioned from operation at a starting resistance level between which and an ending resistance level there are one or more intermediate resistance levels, the retarder control system automatically transitioning the resistance level at which the drivetrain retarder is operated through each of said intermediate resistance levels.
- 7. The method of operating a retarder control system of claim 6 in a vehicle which includes a microcomputer and means enabling said microcomputer to detect wheel slip of drive wheels of the vehicle, wherein:
(a) said method of operation further comprises a traction controlled method of operation of said retarder control system, said traction controlled method of operation of said retarder control system comprising the steps of:
when the drivetrain retarder has an operational state of on and the microcomputer detects wheel slip of the drive wheels of the vehicle, the retarder control system reducing the resistance level at which the drivetrain retarder is operated or effecting an off operational state of the drivetrain retarder.
- 8. The method of operation of a retarder control system of claim 7 in a vehicle that includes an ABS braking system and which is constructed in such a manner that the retarder control system is apprised when the ABS braking system of the vehicle is active, wherein:
(a) said traction controlled method of operation more specifically comprises the steps of:
when the drivetrain retarder has an operational state of on, the ABS braking system of the vehicle is not active, and the microcomputer of the vehicle determines that wheel slip of the drive wheels of the vehicle is occurring the retarder control system finding a traction limited resistance level of the drivetrain retarder by successively reducing the resistance level at which the drivetrain retarder is operated until the microcomputer of the vehicle determines that wheel slip of the drive wheels of the vehicle has ceased; the retarder control system causing the drivetrain retarder to operate at said traction limited resistance level for a predetermined period of time or until wheel slip of the drive wheels occurs; any time the drivetrain retarder is operated at a traction limited resistance level for said predetermined period of time without wheel slip of the drive wheels of the vehicle occuring, the retarder control system incrementing the resistance level at which the drivetrain retarder is operated up to a next highest resistance level at which the drivetrain retarder can be operated; and any time the drivetrain retarder is operated at a traction limited resistance level and wheel slip of the drive wheels of the vehicle occurs, the retarder control system reducing the resistance level at which the drivetrain retarder is operated until wheel slip of the drive wheels of the vehicle ceases.
- 9. The method of operating a retarder control system of claim 1 in a vehicle that includes a microcomputer and means enabling the microcomputer to detect when wheel slip of drive wheels of the vehicle occurs, wherein:
(a) said method of operation further comprises a traction controlled method of operation of said retarder control system, said traction controlled method of operation of said retarder control system comprising the steps of:
when the drivetrain retarder has an operational state of on and the microcomputer detects wheel slip of the drive wheels of the vehicle, the retarder control system reducing the resistance level at which the drivetrain retarder is operated or effecting an off operational state of the drivetrain retarder.
- 10. The method of operation of a retarder control system of claim 9 in a vehicle that includes an ABS braking system and which is constructed in such a manner that the retarder control system is apprised when the ABS braking system of the vehicle is active, wherein:
(a) said traction controlled method of operation more specifically comprises the steps of:
when the drivetrain retarder has an operational state of on, the ABS braking system of the vehicle is not active, and the microcomputer of the vehicle determines that wheel slip of the drive wheels of the vehicle is occurring the retarder control system finding a traction limited resistance level of the drivetrain retarder by successively reducing the resistance level at which the drivetrain retarder is operated until the microcomputer of the vehicle determines that wheel slip of the drive wheels of the vehicle has ceased; the retarder control system causing the drivetrain retarder to operate at said traction limited resistance level for a predetermined period of time or until wheel slip of the drive wheels occurs; any time the drivetrain retarder is operated at a traction limited resistance level for said predetermined period of time without wheel slip of the drive wheels of the vehicle occuring, the retarder control system incrementing the resistance level at which the drivetrain retarder is operated up to a next highest resistance level at which the drivetrain retarder can be operated; and any time the drivetrain retarder is operated at a traction limited resistance level and wheel slip of the drive wheels of the vehicle occurs, the retarder control system reducing the resistance level at which the drivetrain retarder is operated until wheel slip of the drive wheels of the vehicle ceases.
- 11. The method of operating a retarder control system of claim 1 in a vehicle that includes friction brakes with a brake control member that has a home position and which vehicle further comprises a switch or sensor, which is communicatively linked to the retarder control system, and which provides signals to said retarder control system dependent upon whether the brake control member is disposed in its home position or is displace to a brake trigger position, wherein:
(a) said method of operating the retarder control system comprises a brake triggered activation method which comprises the steps of:
when the vehicle is in motion and the brake control member is displaced from its home position and is in a brake trigger position, the retarder control system effecting an on operational state of the drivetrain retarder of the vehicle.
- 12. The method of operating a retarder control system of claim 11 in a vehicle that has a friction braking system with a brake control member and which vehicle comprises a switch or sensor, to which the retarder control system is communicatively linked, and which provides signals to the retarder control system that the retarder control system can interpret to determine a magnitude of a displacement of the brake control member from its home position when the brake control member is displaced from its home position to a brake trigger position, wherein:
(a) said step of the retarder controller effecting an on operational state of the drivetrain retarder when the vehicle is in motion and the brake control member is displaced from its home position and is in a brake trigger position more specifically comprises the retarder control system effecting operation of the drivetrain retarder at a resistance level that is proportional to the displacement of the brake control member from its home position.
- 13. The method of operation of a retarder control system of claim 12 in a vehicle that further includes an ABS system, wherein:
(a) said step of the retarder control system effecting an operational state of on of the drivetrain retarder at a resistance level proportional to the displacement of the brake control member from its home position is triggered by displacement of said brake control member from its home position only when said vehicle is in motion and said braking ABS system of said vehicle is not active.
- 14. The method of operation of a retarder control system of claim 11 in a vehicle that further includes an ABS system, wherein:
(a) said step of the retarder control system effecting an operational state of on of the drivetrain retarder is triggered by displacement of said brake control member from its home position only when said vehicle is in motion and said braking ABS system of said vehicle is not active.
- 15. A computer program for controlling at least some operations of a retarder control system, which includes a microcomputer, of a vehicle, which comprises the retarder control system and a drivetrain retarder, which is controlled by the retarder control system, said computer program comprising:
(a) computer instructions embodied in computer readable medium for causing the microcomputer of the retarder control system and, thus, the retarder control system to perform the steps of:
the retarder control system controlling the resistance level and/or the operational state at which the drivetrain retarder is operated based at least partially upon one or more factors selected from a group consisting of speeds of one or more drivetrain components, vehicle speed, rotational speed of one or more undriven wheels, position of a brake control member, elapsed time of activation of a brake control member and elapsed time from a change in a selected resistance level at which the retarder control system is commanded to effect operation of the drivetrain retarder.
- 16. The computer program of claim 15, wherein:
(a) said computer program is configured to more specifically cause the retarder control system to perform a progressive transition method which comprises the steps of:
the retarder control system causing the resistance level, at which the drivetrain retarder is operated, to automatically step operation of the drivetrain retarder through one or more intermediate resistance levels when transitioning a resistance level at which the drivetrain retarder is operated from a starting resistance level to an ending resistance level between which said intermediate resistance levels are present.
- 17. The computer program of claim 16, wherein:
(a) said computer program is more specifically configured such that said progressive transition method more specifically comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time the drivetrain retarder is activated to an ending resistance level between which and a starting resistance level there are intermediate resistance levels, the retarder control system automatically transitioning the resistance level at which the drivetrain retarder is operated through one or more of said intermediate resistance levels.
- 18. The computer program of claim 17, wherein:
(a) said computer program is more specifically configured such that said progressive transition method further comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time the drivetrain retarder is deactivated from operation at a starting resistance level between which and an ending resistance level there are one or more intermediate resistance levels, the retarder control system automatically transitioning the resistance level at which the drivetrain retarder is operated through one or more of said intermediate resistance levels.
- 19. The computer program of claim 18, wherein:
(a) said computer program is more specifically configured such that said progressive transition method more specifically comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time the drivetrain retarder is transitioned from operation at a starting resistance level between which and an ending resistance level there are one or more intermediate resistance levels, the retarder control system automatically transitioning the resistance level at which the drivetrain retarder is operated through one or more of said intermediate resistance levels.
- 20. The computer program of claim 19, wherein:
(a) said computer program is more specifically configured such that said progressive transition method more specifically comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time the drivetrain retarder is transitioned from operation at a starting resistance level between which and an ending resistance level there are one or more intermediate resistance levels, the retarder control system automatically transitioning the resistance level at which the drivetrain retarder is operated through each of said intermediate resistance levels.
- 21. The computer program of claim 20 for a vehicle which includes means enabling the microcomputer of the retarder control system to detect wheel slip of drive wheels of the vehicle, wherein:
(a) said computer program is further configured to cause operation of the microcomputer of the retarder control system according to a traction controlled method of operation in addition to said progressive transition method of operation, said traction controlled method of operation of said retarder control system comprising the steps of:
when the drivetrain retarder has an operational state of on and the microcomputer detects wheel slip of the drive wheels of the vehicle, the retarder control system reducing the resistance level at which the drivetrain retarder is operated or effecting an off operational state of the drivetrain retarder.
- 22. The computer program of claim 21 in a vehicle that includes an ABS braking system and which is constructed in such a manner that the microcomputer of the retarder control system is apprised when the ABS braking system of the vehicle is active, wherein:
(a) said computer program is more specifically configured such that said traction controlled method of operation more specifically comprises the steps of:
when the drivetrain retarder has an operational state of on, the ABS braking system of the vehicle is not active, and the microcomputer of the vehicle determines that wheel slip of the drive wheels of the vehicle is occurring the retarder control system finding a traction limited resistance level of the drivetrain retarder by successively reducing the resistance level at which the drivetrain retarder is operated until the microcomputer of the vehicle determines that wheel slip of the drive wheels of the vehicle has ceased; the retarder control system causing the drivetrain retarder to operate at said traction limited resistance level for a predetermined period of time or until wheel slip of the drive wheels occurs; any time the drivetrain retarder is operated at a traction limited resistance level for said predetermined period of time without wheel slip of the drive wheels of the vehicle occuring, the retarder control system incrementing the resistance level at which the drivetrain retarder is operated up to a next highest resistance level at which the drivetrain retarder can be operated; and any time the drivetrain retarder is operated at a traction limited resistance level and wheel slip of the drive wheels of the vehicle occurs, the retarder control system reducing the resistance level at which the drivetrain retarder is operated until wheel slip of the drive wheels of the vehicle ceases.
- 23. The computer program of claim 15 in a vehicle that includes means enabling the microcomputer of the retarder control system to detect when wheel slip of drive wheels of the vehicle occurs, wherein:
(a) said computer program is further configured to cause operation of the microcomputer of the retarder control system according to a traction controlled method of operation in addition to said progressive transition method of operation, said traction controlled method of operation of said retarder control system comprising the steps of:
when the drivetrain retarder has an operational state of on and the microcomputer detects wheel slip of the drive wheels of the vehicle, the retarder control system reducing the resistance level at which the drivetrain retarder is operated or effecting an off operational state of the drivetrain retarder.
- 24. The computer program of claim 23 in a vehicle that includes an ABS braking system and which is constructed in such a manner that the microcomputer of the retarder control system is apprised when the ABS braking system of the vehicle is active, wherein:
(a) said computer program is more specifically configured such that said traction controlled method of operation more specifically comprises the steps of:
when the drivetrain retarder has an operational state of on, the ABS braking system of the vehicle is not active, and the microcomputer of the vehicle determines that wheel slip of the drive wheels of the vehicle is occurring the retarder control system finding a traction limited resistance level of the drivetrain retarder by successively reducing the resistance level at which the drivetrain retarder is operated until the microcomputer of the vehicle determines that wheel slip of the drive wheels of the vehicle has ceased; the retarder control system causing the drivetrain retarder to operate at said traction limited resistance level for a predetermined period of time or until wheel slip of the drive wheels occurs; any time the drivetrain retarder is operated at a traction limited resistance level for said predetermined period of time without wheel slip of the drive wheels of the vehicle occuring, the retarder control system incrementing the resistance level at which the drivetrain retarder is operated up to a next highest resistance level at which the drivetrain retarder can be operated; and any time the drivetrain retarder is operated at a traction limited resistance level and wheel slip of the drive wheels of the vehicle occurs, the retarder control system reducing the resistance level at which the drivetrain retarder is operated until wheel slip of the drive wheels of the vehicle ceases.
- 25. The computer program of claim 15 in a vehicle that includes a friction braking system with a brake control member that has a home position and which vehicle further comprises a switch or sensor, which is communicatively linked to the retarder control system, and which provides signals to said retarder control system dependent upon whether the brake control member is disposed in its home position or is displace to a brake trigger position, wherein:
(a) said computer program is configured to cause the retarder control system to operate according to a brake triggered activation method which comprises the steps of:
when the vehicle is in motion and the brake control member is displaced from its home position and is in a brake trigger position, the retarder control system effecting an on operational state of the drivetrain retarder of the vehicle.
- 26. The computer program of claim 25 in a vehicle that includes a friction braking system with a brake control member and which vehicle comprises a switch or sensor, to which the retarder control system is communicatively linked, and which provides signals to the retarder control system that the retarder control system can interpret to determine a magnitude of a displacement of the brake control member from its home position when the brake control member is displaced from its home position to a brake trigger position, wherein:
(a) said computer program is further configured such that said step of the retarder controller effecting an on operational state of the drivetrain retarder when the vehicle is in motion and the brake control member is displaced from its home position and is in a brake trigger position more specifically comprises the retarder control system effecting operation of the drivetrain retarder at a resistance level that is proportional to the displacement of the brake control member from its home position.
- 27. The computer program of claim 26 for a vehicle that further includes an ABS system, wherein:
(a) said computer program is further configured such that said step of the retarder control system effecting an operational state of on of the drivetrain retarder at a resistance level proportional to the displacement of the brake control member from its home position is only executed when the vehicle is in motion, the brake control member is displaced from its home position and is in a brake triggered position, and the ABS system of the vehicle is not active.
- 28. The computer program of claim 25 in a vehicle that further includes an ABS system, wherein:
(a) said computer program is further configured such that said step of the retarder control system effecting an operational state of on of the drivetrain retarder is only executed when the vehicle is in motion, the brake control member is displaced from its home position and is in a brake triggered position, and the ABS system of the vehicle is not active.
- 29. A vehicle, comprising:
(a) one or more frame structures to which a majority of other components of said vehicle are engaged directly or indirectly and from which a majority of other components of said vehicle derive support directly or indirectly; (b) a suspension system to which said one or more frame structures of said vehicle are engaged and which supports said one or more frame structures in an elevated position above the ground and which provides said vehicle with relatively low resistance to movement along the ground; (c) an occupant cabin which is engaged to and supported by said one or more frame structures of said vehicle; (d) a drivetrain which is engaged to said one or more frame structures of said vehicle and which is operable to provide motivation of said vehicle along the ground; (e) a drivetrain retarder engaged to one or more of said frame structures of said vehicle and some part of said drivetrain of said vehicle, which drivetrain retarder is operable to resist movement of said vehicle along the ground; (f) a retarder control system that controls whether said drivetrain retarder has an on operational state, in which it resists movement of said vehicle along the ground, or an off operational state, in which it presents little or no resistance to movement of said vehicle along the ground, and which drivetrain retarder controls the resistance level at which said drivetrain retarder is operated when it has an operational state of on; (g) wherein said retarder control system is configured in such a manner that at least a portion of operation of said retarder control system comprises the steps of:
said retarder control system controlling said resistance level and/or said operational state at which said drivetrain retarder is operated based at least partially upon one or more factors selected from a group consisting of speeds of one or more drivetrain components, vehicle speed, rotational speed of one or more undriven wheels, position of a brake control member, elapsed time of activation of a brake control member and elapsed time that said drivetrain retarder has had an on operational state.
- 30. The vehicle of claim 29, wherein:
(a) said retarder control system is configured in such a manner that at least a portion of said operation of said retarder control system comprises a progressive transition method of operation that comprises the steps of:
said retarder control system causing said resistance level, at which said drivetrain retarder is operated, to automatically step operation of said drivetrain retarder through one or more intermediate resistance levels when transitioning a resistance level at which said drivetrain retarder is operated from a starting resistance level to an ending resistance level between which said intermediate resistance levels are present.
- 31. The vehicle of claim 30, wherein:
(a) said retarder control system is configured in such a manner that said progressive transition method according to which at least a portion of the operation of said retarder control system is executed more specifically comprises the steps of:
whenever said retarder control system is in a progressive transition mode of operation, every time said drivetrain retarder is activated to an ending resistance level between which and a starting resistance level there are intermediate resistance levels, said retarder control system automatically transitioning said resistance level at which said drivetrain retarder is operated through one or more of said intermediate resistance levels.
- 32. The vehicle of claim 31, wherein:
(a) said retarder control system is configured in such a manner that said progressive transition method according to which at least a portion of the operation of said retarder control system is executed further comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time said drivetrain retarder is deactivated from operation at a starting resistance level between which and an ending resistance level there are one or more intermediate resistance levels, said retarder control system automatically transitioning said resistance level at which said drivetrain retarder is operated through one or more of said intermediate resistance levels.
- 33. The vehicle of claim 32, wherein:
(a) said retarder control system is configured in such a manner that said progressive transition method according to which at least a portion of the operation of said retarder control system is executed more specifically comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time said drivetrain retarder is transitioned from operation at a starting resistance level between which and an ending resistance level there are one or more intermediate resistance levels, said retarder control system automatically transitioning said resistance level at which said drivetrain retarder is operated through one or more of said intermediate resistance levels.
- 34. The vehicle of claim 33, wherein:
(a) said retarder control system is configured in such a manner that said progressive transition method according to which at least a portion of the operation of said retarder control system is executed more specifically comprises the steps of:
whenever the retarder control system is in a progressive transition mode of operation, every time said drivetrain retarder is transitioned from operation at a starting resistance level between which and an ending resistance level there are one or more intermediate resistance levels, said retarder control system automatically transitioning said resistance level at which said drivetrain retarder is operated through each of said intermediate resistance levels.
- 35. The vehicle of claim 34, wherein:
(a) said retarder control system of said vehicle includes a microcomputer and means by which said microcomputer can detect wheel slip of drive wheels of said vehicle; and (b) said retarder control system is configured in such a manner that at least a portion of operation of said retarder control system is executed in accordance with a traction limited method of operation which comprises the steps of:
when said drivetrain retarder has an operational state of on and said microcomputer detects wheel slip of said drive wheels of said vehicle, said retarder control system reducing said resistance level at which said drivetrain retarder is operated or effecting an off operational state of said drivetrain retarder.
- 36. The vehicle of claim 35, wherein:
(a) said vehicle further comprises an ABS braking system; (b) said vehicle, said retarder control system, and said ABS braking system are configured in such a manner that said microcomputer of said retarder control system is apprised of activity by said ABS braking system; (c) said retarder control system is configured in such a manner that said traction limited method of operation according to which at least a portion of operation of said drivetrain retarder is executed, more specifically comprises the steps of:
when said drivetrain retarder has an operational state of on, said ABS braking system of said vehicle is not active, and said microcomputer of said retarder control system determines that wheel slip of said drive wheels of said vehicle is occurring said retarder control system finding a traction limited resistance level of said drivetrain retarder by successively reducing said resistance level at which said drivetrain retarder is operated until said microcomputer of said retarder control system determines that wheel slip of said drive wheels of said vehicle has ceased; said retarder control system causing said drivetrain retarder to operate at said traction limited resistance level for a predetermined period of time or until wheel slip of said drive wheels occurs; any time said drivetrain retarder is operated at a traction limited resistance level for said predetermined period of time without wheel slip of said drive wheels of said vehicle occuring, said retarder control system incrementing said resistance level at which said drivetrain retarder is operated up to a next highest resistance level at which said drivetrain retarder can be operated; and any time said drivetrain retarder is operated at a traction limited resistance level and wheel slip of said drive wheels of said vehicle occurs, said retarder control system reducing said resistance level at which said drivetrain retarder is operated until wheel slip of said drive wheels of said vehicle ceases.
- 37. The vehicle of claim 36, wherein:
(a) said drivetrain retarder is an engine compression brake.
- 38. The vehicle of claim 37, wherein:
(a) said means by which said microcomputer of said retarder control system can detect wheel slip of said drive wheels of said vehicle comprises wheel speed sensors of said ABS braking system communicatively linked either directly or indirectly to said microcomputer of said retarder control system.
- 39. The vehicle of claim 38, wherein:
(a) said retarder control system comprises a retarder state selector which can be used by an operator of said vehicle to command said retarder control system to effect an operational state of on of said drivetrain retarder and which can also be used by an operator of said vehicle to command said retarder control system to effect an operational state of off of said drivetrain retarder; and (b) said retarder control system comprises a retarder resistance selector which can be used by an operator of said vehicle to communicate said selected resistance level to said retarder control system.
- 40. The vehicle of claim 31, wherein:
(a) said drivetrain retarder is an engine compression brake.
- 41. The vehicle of claim 40, wherein:
(a) said retarder control system comprises a retarder state selector which can be used by an operator of said vehicle to command said retarder control system to effect an operational state of on of said drivetrain retarder and which can also be used by an operator of said vehicle to command said retarder control system to effect an operational state of off of said drivetrain retarder; and (b) said retarder control system comprises a retarder resistance selector which can be used by an operator of said vehicle to communicate said selected resistance level to said retarder control system.
- 42. The vehicle of claim 41, wherein:
(a) said retarder control system comprises a ESC that performs all logic operations associated with causing said retarder control system to operate according to said progressive transition method; (b) said ESC is communicatively linked to said retarder state selector and said retarder resistance selector such that said ESC is apprised of an operational state commanded by said retarder state selector and a resistance level selected by said retarder resistance selector; and (c) said ESC controls operation of said drivetrain retarder directly or indirectly by communicating commands over a J1939 serial data link to said drivetrain retarder.
- 43. The vehicle of claim 42, wherein:
(a) said ESC is communicatively linked to sensors and switches of systems of said vehicle other than said retarder control system and controls at least part of operations of said systems of said vehicle other than said retarder control system.
- 44. The vehicle of claim 31, wherein:
(a) said retarder control system comprises a retarder state selector which can be used by an operator of said vehicle to command said retarder control system to effect an operational state of on of said drivetrain retarder and which can also be used by an operator of said vehicle to command said retarder control system to effect an operational state of off of said drivetrain retarder; and (b) said retarder control system comprises a retarder resistance selector which can be used by an operator of said vehicle to communicate said selected resistance level to said retarder control system.
- 45. The vehicle of claim 44, wherein:
(a) said retarder control system comprises a ESC that performs all logic operations associated with causing said retarder control system to operate according to said progressive transition method; (b) said ESC is communicatively linked to said retarder state selector and said retarder resistance selector such that said ESC is apprised of an operational state commanded by said retarder state selector and a resistance level selected by said retarder resistance selector; and (c) said ESC controls operation of said drivetrain retarder directly or indirectly by communicating commands over a J1939 serial data link to said drivetrain retarder.
- 46. The vehicle of claim 45, wherein:
(a) said ESC is communicatively linked to sensors and switches of systems of said vehicle other than said retarder control system and controls at least part of operations of said systems of said vehicle other than said retarder control system.
- 47. The vehicle of claim 31, wherein:
(a) said retarder control system comprises a microcomputer; (b) said retarder control system comprises a computer program embodied in computer readable medium which causes said microcomputer to execute said steps of said progressive transition method.
- 48. The vehicle of claim 47, wherein:
(a) said microcomputer of said retarder control system is communicatively linked to sensors and switches of systems of said vehicle other than those of said retarder control system and said microcomputer controls at least part of operations of said other systems of said vehicle in addition to controlling operations of said retarder control system of said vehicle.
- 49. The vehicle of claim 29, wherein:
(b) said retarder control system of said vehicle includes a microcomputer and means by which said microcomputer can detect wheel slip of drive wheels of said vehicle; and (c) said retarder control system is configured in such a manner that at least a portion of operation of said retarder control system is executed in accordance with a traction limited method of operation which comprises the steps of:
when said drivetrain retarder has an operational state of on and said microcomputer detects wheel slip of said drive wheels of said vehicle, said retarder control system reducing said resistance level at which said drivetrain retarder is operated or effecting an off operational state of said drivetrain retarder.
- 50. The vehicle of claim 49, wherein:
(a) said vehicle further comprises an ABS braking system; (b) said vehicle, said retarder control system, and said ABS braking system are configured in such a manner that said microcomputer of said retarder control system is apprised of activity by said ABS braking system; (c) said retarder control system is configured in such a manner that said traction limited method of operation according to which at least a portion of operation of said drivetrain retarder is executed, more specifically comprises the steps of:
when said drivetrain retarder has an operational state of on, said ABS braking system of said vehicle is not active, and said microcomputer of said retarder control system determines that wheel slip of said drive wheels of said vehicle is occurring said retarder control system finding a traction limited resistance level of said drivetrain retarder by successively reducing said resistance level at which said drivetrain retarder is operated until said microcomputer of said retarder control system determines that wheel slip of said drive wheels of said vehicle has ceased; said retarder control system causing said drivetrain retarder to operate at said traction limited resistance level for a predetermined period of time or until wheel slip of said drive wheels occurs; any time said drivetrain retarder is operated at a traction limited resistance level for said predetermined period of time without wheel slip of said drive wheels of said vehicle occuring, said retarder control system incrementing said resistance level at which said drivetrain retarder is operated up to a next highest resistance level at which said drivetrain retarder can be operated; and any time said drivetrain retarder is operated at a traction limited resistance level and wheel slip of said drive wheels of said vehicle occurs, said retarder control system reducing said resistance level at which said drivetrain retarder is operated until wheel slip of said drive wheels of said vehicle ceases.
- 51. The vehicle of claim 50, wherein:
(a) said means by which said microcomputer of said retarder control system can detect wheel slip of said drive wheels of said vehicle comprises wheel speed sensors of said ABS braking system communicatively linked either directly or indirectly to said microcomputer of said retarder control system.
- 52. The vehicle of claim 51, wherein:
(a) said drivetrain retarder is an engine compression brake.
- 53. The vehicle of claim 52, wherein:
(a) said retarder control system comprises a retarder state selector which can be used by an operator of said vehicle to command said retarder control system to effect an operational state of on of said drivetrain retarder and which can also be used by an operator of said vehicle to command said retarder control system to effect an operational state of off of said drivetrain retarder; and (b) said retarder control system comprises a retarder resistance selector which can be used by an operator of said vehicle to communicate said selected resistance level to said retarder control system.
- 54. The vehicle of claim 53, wherein:
(a) said microcomputer of said retarder control system is a ESC that performs all logic operations associated with causing said retarder control system to operate according to said traction controlled method; (b) said ESC is communicatively linked to said retarder state selector and said retarder resistance selector such that said ESC is apprised of an operational state commanded by said retarder state selector and a resistance level selected by said retarder resistance selector; (c) said ESC is communicatively linked to said wheel speed sensors of said ABS system of said vehicle such that said ESC may be apprised of wheel speeds of wheels of said vehicle so that said ESC may determine whether or not wheel slip of said drive wheels of said vehicle is occurring; and (d) said ESC controls operation of said drivetrain retarder directly or indirectly by communicating commands over a J1939 serial data link to said drivetrain retarder.
- 55. The vehicle of claim 49, wherein:
(a) said vehicle comprises an ABS braking system; (b) said means by which said microcomputer of said retarder control system can detect wheel slip of said drive wheels of said vehicle comprises wheel speed sensors of said ABS braking system communicatively linked either directly or indirectly to said microcomputer of said retarder control system.
- 56. The vehicle of claim 50, wherein:
(a) said retarder control system comprises a retarder state selector which can be used by an operator of said vehicle to command said retarder control system to effect an operational state of on of said drivetrain retarder and which can also be used by an operator of said vehicle to command said retarder control system to effect an operational state of off of said drivetrain retarder; and (b) said retarder control system comprises a retarder resistance selector which can be used by an operator of said vehicle to communicate said selected resistance level to said retarder control system.
- 57. The vehicle of claim 56, wherein:
(a) said microcomputer of said retarder control system is a ESC that performs all logic operations associated with causing said retarder control system to operate according to said traction controlled method; (b) said ESC is communicatively linked to said retarder state selector and said retarder resistance selector such that said ESC is apprised of an operational state commanded by said retarder state selector and a resistance level selected by said retarder resistance selector; (c) said ESC is communicatively linked to said wheel speed sensors of said ABS system of said vehicle such that said ESC may be apprised of wheel speeds of wheels of said vehicle so that said ESC may determine whether or not wheel slip of said drive wheels of said vehicle is occurring; and (d) said ESC controls operation of said drivetrain retarder directly or indirectly by communicating commands over a J1939 serial data link to said drivetrain retarder.
- 58. The vehicle of claim 57, wherein:
(a) said ESC is communicatively linked to sensors and switches of systems of said vehicle other than said retarder control system and controls at least part of operations of said systems of said vehicle other than said retarder control system in addition to controlling operations of said retarder control system.
- 59. The vehicle of claim 49, wherein:
(a) said microcomputer of said retarder control system is communicatively linked to sensors and switches of systems of said vehicle other than those of said retarder control system and said microcomputer controls at least part of operations of said other systems of said vehicle in addition to controlling operations of said retarder control system of said vehicle.
- 60. The vehicle of claim 50, wherein:
(a) said microcomputer of said retarder control system is communicatively linked to sensors and switches of systems of said vehicle other than those of said retarder control system and said microcomputer controls at least part of operations of said other systems of said vehicle in addition to controlling operations of said retarder control system of said vehicle.
- 61. The vehicle of claim 49, wherein:
(a) said drivetrain retarder is an engine compression brake.
- 62. The vehicle of claim 50, wherein:
(a) said drivetrain retarder is an engine compression brake.
- 63. The vehicle of claim 29, wherein:
(a) in addition to said drivetrain retarder, said vehicle comprises friction brakes; (b) said vehicle further comprises a brake control member that causes actuation of said friction brakes when said brake control member is displaced from its home position to a brake trigger position; (c) said vehicle comprises a switch or sensor, to which said retarder control system is communicatively linked, and which provides signals to said retarder control system that are dependent upon whether or not said brake control member is disposed in its home position or displaced from its home position to a brake trigger position; (d) said retarder control system is configured in such a manner that at least part of operations of said retarder control system are executed in accordance with a brake triggered activation method which comprises the steps of:
when said vehicle is in motion and said brake control member is displaced from its home position and is in a brake trigger position, said retarder control system effecting an on operational state of said drivetrain retarder of said vehicle.
- 64. The vehicle of claim 63, wherein:
(a) said vehicle comprises a switch or sensor, to which said retarder control system is communicatively linked, and which provides signals to said retarder control system that said retarder control system can interpret to determine a magnitude of a displacement of said brake control member from its home position when said brake control member is displaced from its home position to a brake trigger position; and (b) said retarder control system is more specifically configured in such a manner that said step of said retarder controller effecting an on operational state of said drivetrain retarder when said vehicle is in motion and said brake control member is displaced from its home position and is in a brake trigger position more specifically comprises said retarder control system effecting operation of said drivetrain retarder at a resistance level that is proportional to said displacement of said brake control member from its home position.
- 65. The vehicle of claim 64, wherein:
(a) said friction brakes of said vehicle comprises an ABS braking system for modulating braking effort of said friction brakes to prevent wheel slip of wheels of said suspension system of said vehicle; (b) said retarder control system and said ABS braking system are configured and interact in such a manner that said retarder control system is apprised when said ABS braking system is active and modulating braking effort of said friction brakes; (c) said step of the retarder control system effecting an operational state of on of said drivetrain retarder at a resistance level proportional to said displacement of said brake control member from its home position is triggered by displacement of said brake control member from its home position only when said vehicle is in motion and said braking ABS system of said vehicle is not active.
- 66. The vehicle of claim 65, wherein:
(a) said drivetrain retarder is an engine compression brake.
- 67. The vehicle of claim 66, wherein:
(a) said retarder control system comprises a microcomputer; and (b) said retarder control system further comprises a computer program embodied in computer readable medium, which computer program causes said retarder control system to perform said steps of said brake triggered method.
- 68. The vehicle of claim 67, wherein:
(a) said microcomputer of said retarder control system is communicatively linked to sensors and switches of systems of said vehicle other than said retarder control system and controls at least parts of operation of said other system of said vehicle in addition to controlling at least parts of said operation of said retarder control system.
- 69. The vehicle of claim 63, wherein:
(b) said friction brakes of said vehicle comprises an ABS braking system for modulating braking effort of said friction brakes to prevent wheel slip of wheels of said suspension system of said vehicle; (c) said retarder control system and said ABS braking system are configured and interact in such a manner that said retarder control system is apprised when said ABS braking system is active and modulating braking effort of said friction brakes; (d) said step of the retarder control system effecting an operational state of on of said drivetrain retarder is triggered by displacement of said brake control member from its home position only when said vehicle is in motion and said braking ABS system of said vehicle is not active.
- 70. The vehicle of claim 63, wherein:
(a) said drivetrain retarder is an engine compression brake.
- 71. The vehicle of claim 64, wherein:
(a) said drivetrain retarder is an engine compression brake.
- 72. The vehicle of claim 63, wherein:
(a) said retarder control system comprises a microcomputer; and (b) said retarder control system further comprises a computer program embodied in computer readable medium, which computer program causes said retarder control system to perform said steps of said brake triggered method.
Parent Case Info
[0001] This non-provisional patent application claims priority under Provisional Patent Application Serial No. 60/273,270, filed Mar. 2, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60273270 |
Mar 2001 |
US |