Claims
- 1. A method of estimating minimum timing for the best torque timing, comprising using an ionization signal to calculate the minimum timing for the best torque timing.
- 2. A method of estimating minimum timing for the best torque timing according to claim 1 wherein said step of using an ionization signal to calculate the minimum timing for the best torque timing further comprises the step of correlating an ionization signal to a cylinder pressure signal.
- 3. The method of estimating minimum timing for the best torque timing according to claim 1 wherein said step of using an ionization signal to calculate the minimum timing for the best torque timing further comprises combining one or more of a maximum flame acceleration point, a maximum heat release location and a second peak location.
- 4. The method of estimating minimum timing for the best torque timing according to claim 3 wherein said maximum flame acceleration point is correlates to Top Dead Center, said maximum heat release location correlates to a 50% mass fraction burn location and said second peak location correlates to a peak pressure location.
- 5. A method of estimating minimum timing for the best torque timing, comprising the step of combining minimum timing for the best torque timing estimation criteria.
- 6. The method of estimating minimum timing for the best torque timing according to claim 5 wherein said step of combining minimum timing for the best torque timing criteria comprises combining criteria disclosed in an ionization signal.
- 7. The method of estimating minimum timing for the best torque timing according to claim 5 wherein said step of combining minimum timing for the best torque timing criteria comprises combining criteria disclosed in an ionization signal and in a pressure signal.
- 8. The method of estimating minimum timing for the best torque timing according to claim 5 wherein said step of combining minimum timing for the best torque timing criteria comprises the step of combining a maximum flame acceleration location, a maximum heat release location, and a second peak location.
- 9. The method of estimating minimum timing for the best torque timing according to claim 5 wherein said minimum timing for the best torque timing criteria comprises a maximum flame acceleration location.
- 10. The method of estimating minimum timing for the best torque timing according to claim 5 wherein said step of combining minimum timing for the best torque timing criteria comprises the step of combining a maximum heat release location and a second peak location.
- 11. The method of estimating minimum timing for the best torque timing according to claim 5 said step of combining minimum timing for the best torque timing criteria comprises:
determining what case an ionization signal waveform fits; and calculating minimum timing for the best torque timing.
- 12. The method according to claim 8 wherein said step of combining a maximum flame acceleration location, a maximum heat release location, and a second peak location comprises the steps of:
creating a first sum by subtracting a 50% burn location from a maximum heat release location; creating a second sum by subtracting a peak cylinder pressure location from a second peak location; creating a third sum by adding said first sum, said second sum and a maximum flame acceleration location; and dividing said third sum by three.
- 13. The method according to claim 10 wherein said step of combining a maximum heat release location and a second peak location comprises the steps of:
creating a first sum by subtracting a 50% burn location from a maximum heat release location; creating a second sum by subtracting a peak cylinder pressure location from a second peak location; creating a third sum by adding said first sum and said second sum; and dividing said third sum by two.
- 14. The method of estimating minimum timing for the best torque timing according to claim 11 wherein said step of calculating minimum timing for the best torque timing comprises combining one or more of a maximum flame acceleration point, a maximum heat release location and a second peak location.
- 15. The method of estimating minimum timing for the best torque timing according to claim 14 wherein said step of combining one or more of a maximum flame acceleration location, a maximum heat release location, and a second peak location comprises the steps of:
creating a first sum by subtracting a 50% burn location from a maximum heat release location; creating a second sum by subtracting a peak cylinder pressure location from a second peak location; creating a third sum by adding said first sum, said second sum and a maximum flame acceleration location; and dividing said third sum by three.
- 16. An minimum timing for the best torque estimator, comprising:
a controller; memory operably connected to said controller; software stored in said memory; and an ionization detection unit operably connected to said controller.
- 17. The minimum timing for the best torque estimator according to claim 16 further comprising a lookup table storing timing criteria and operably connected to said controller.
- 18. The minimum timing for the best torque estimator according to claim 16 wherein said software comprises:
instructions to determine what case an ionization signal waveform fits; and instructions to calculate minimum timing for the best torque timing.
- 19. The minimum timing for the best torque estimator according to claim 16 wherein said software comprises instructions which correlate a spark plug ionization signal to a cylinder pressure signal.
- 20. The minimum timing for the best torque estimator according to claim 16 wherein said software comprises instructions which combine one or more of a maximum flame acceleration point, a maximum heat release location and a second peak location.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims benefit of U.S. Provisional Application Serial Nos. 60/423,163, filed Nov. 1, 2002, and 60/467,660, filed May 2, 2003, the entire disclosure of these applications being considered part of the disclosure of this application and hereby incorporated by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60423163 |
Nov 2002 |
US |
|
60467660 |
May 2003 |
US |