Claims
- 1. A method for controlling an engine having an intake manifold, an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow from the intake manifold into a cylinder, the method comprising:directly injecting fuel into said cylinder to change said cylinder air/fuel ratio from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio; and calculating a change in an operating position of said outlet control device based on an engine operating parameter, in response to said fuel injection; and wherein said engine operating parameter comprises a first manifold pressure before said cylinder air/fuel ratio change, said method further including: adjusting said operating position of said outlet control device responsive to said calculated change in said operating position so that a manifold pressure after said air/fuel ratio change approaches said first manifold pressure.
- 2. A method for controlling an engine having an intake manifold, an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow from the intake manifold into a cylinder, the method comprising:directly injecting fuel into said cylinder to change said cylinder air/fuel ratio from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio; and calculating a change in an operating position of said outlet control device based on an engine operating parameter, in response to said fuel injection; and wherein said engine operating parameter comprises a desired cylinder fresh charge to be inducted by said engine after said cylinder air/fuel ratio change, said method further including: adjusting said operating position of said outlet control device responsive to said calculated change in said operating position so that an actual cylinder fresh charge approaches said desired cylinder fresh charge.
- 3. A method for controlling an engine having an intake manifold, an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow from the intake manifold into a cylinder, the method comprising:directly injecting fuel into said cylinder to change said cylinder air/fuel ratio from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio; and calculating a change in an operating position of said outlet control device based on an engine operating parameter, in response to said fuel injection; and; wherein said outlet control device is one of a swirl control valve, and a dual equal variable cam timing system.
- 4. A method for controlling an engine having an intake manifold, an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow from the intake manifold into a cylinder, the method comprising:directly injecting fuel into said cylinder to change said cylinder air/fuel ratio from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio; and calculating a change in an operating position of said outlet control device based on an engine operating parameter, such engine operating condition changing as a function of said change in said cylinder air/fuel ratio in response to said fuel injection; adjusting said operating position of said outlet control device responsive to said calculated change in said operating position so that a value of said engine operating parameter approaches a desired value; and wherein said engine operating parameter comprises one of an intake manifold pressure, a mass air flow rate, and a cylinder air charge.
- 5. A method for controlling an engine having an intake manifold and an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow from the intake manifold into a cylinder, the method comprising:directly injecting fuel into said cylinder to change said cylinder air/fuel ratio from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio; and in response to said fuel injection, calculating a change in a first operating position of said outlet control device based on an engine operating parameter, and, calculating a change in a second operating position of said inlet control device based on said engine operating parameter; and wherein said engine operating parameter comprises a first manifold pressure before said cylinder air/fuel ratio change, said method further including: adjusting said first and second operating positions of said outlet control device and said inlet control device, respectively, responsive to said calculated changes in said first and second operating positions, respectively, so that an actual manifold pressure approaches said first manifold pressure.
- 6. The method of claim 4, wherein said inlet control device comprises a throttle communicating with said intake manifold of said engine.
- 7. A method for controlling an engine having an intake manifold, an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow from the intake manifold into a cylinder, the method comprising:directly injecting fuel into said cylinder to change said cylinder air/fuel ratio from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio; and calculating a change in an operating position of said outlet control device based on an engine operating parameter, in response to said fuel injection; and wherein said outlet control device is one of a swirl control valve, and a dual equal variable cam timing system.
- 8. A method for controlling an engine having an intake manifold, an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow from the intake manifold into a cylinder, the method comprising:directly injecting fuel into said cylinder to change said cylinder air/fuel ratio from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio; calculating a change in a first operating position of said outlet control device based on an engine operating parameter, in response to said fuel injection; calculating a change in a second operating position of said inlet control device based on said engine operating parameter, in response to said fuel injection; and adjusting said first and second operating positions of said outlet and inlet control devices, respectively, responsive to said calculated changes in said first and second operating positions, respectively, so that a value of said engine operating parameter approaches a desired value.
- 9. The method of claim 8 wherein said operating parameter comprises one of an intake manifold pressure, a mass air flow rate, and a cylinder air charge.
- 10. An article of manufacture comprising:a computer storage medium having a computer program encoded therein for controlling an engine during a cylinder air/fuel ratio change from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio, the engine having an intake manifold, an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow exiting the intake manifold, said computer storage medium comprising: code for determining a desired cylinder fresh charge based on said first and second cylinder air/fuel ratio; code for determining an outlet control device setpoint based on said desired cylinder fresh charge; code for determining a new inlet control device setpoint based on said desired cylinder fresh charge; and, code for changing said first and second operational positions of said outlet control device and said inlet control device, respectively, responsive to said outlet control device setpoint and said inlet control device setpoint, respectively.
- 11. A method for controlling an engine having an intake manifold, an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow from the intake manifold into a cylinder, the method comprising:directly injecting fuel into said cylinder to change said cylinder air/fuel ratio from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio; and calculating a change in an operating position of said outlet control device based on an engine operating parameter, such engine operating condition changing as a function of said change in said cylinder air/fuel ratio in response to said fuel injection; adjusting said operating position of said outlet control device responsive to said calculated change in said operating position so that a value of said engine operating parameter approaches a desired value; and wherein said engine operating parameter comprises intake manifold pressure.
- 12. A method for controlling an engine having an intake manifold, an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow from the intake manifold into a cylinder, the method comprising:directly injecting fuel into said cylinder to change said cylinder air/fuel ratio from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio; and calculating a change in an operating position of said outlet control device based on an engine operating parameter, such engine operating condition changing as a function of said change in said cylinder air/fuel ratio in response to said fuel injection; adjusting said operating position of said outlet control device responsive to said calculated change in said operating position so that a value of said engine operating parameter approaches a desired value; and wherein said engine operating parameter comprises mass air flow rate.
- 13. A method for controlling an engine having an intake manifold, an inlet control device for controlling flow entering the manifold, and an outlet control device for controlling flow from the intake manifold into a cylinder, the method comprising:directly injecting fuel into said cylinder to change said cylinder air/fuel ratio from a first cylinder air/fuel ratio to a second cylinder air/fuel ratio; and calculating a change in an operating position of said outlet control device based on an engine operating parameter, such engine operating condition changing as a function of said change in said cylinder air/fuel ratio in response to said fuel injection; adjusting said operating position of said outlet control device responsive to said calculated change in said operating position so that a value of said engine operating parameter approaches a desired value; and wherein said engine operating parameter comprises cylinder air charge.
Parent Case Info
This application is a continuation of Application Serial No. 09/420,451, filed Oct. 18, 1999.
US Referenced Citations (61)
Foreign Referenced Citations (31)
Number |
Date |
Country |
3916605 |
Nov 1989 |
DE |
4209684 |
Sep 1993 |
DE |
4321413 |
Jan 1995 |
DE |
19847851 |
Apr 1999 |
DE |
0376703 |
Jul 1990 |
EP |
0440314 |
Aug 1991 |
EP |
0560476 |
Sep 1993 |
EP |
0990775 |
Apr 2000 |
EP |
1020625 |
Jul 2000 |
EP |
2315571 |
Feb 1998 |
GB |
2338085 |
Dec 1999 |
GB |
59-194058 |
Nov 1984 |
JP |
60-240828 |
Nov 1985 |
JP |
62-101825 |
May 1987 |
JP |
63-032122 |
Feb 1988 |
JP |
1-100316 |
Apr 1989 |
JP |
2-176115 |
Jul 1990 |
JP |
3-009021 |
Jan 1991 |
JP |
4-143410 |
May 1992 |
JP |
4-148023 |
May 1992 |
JP |
5-086913 |
Apr 1993 |
JP |
9-125994 |
May 1997 |
JP |
9-256880 |
Sep 1997 |
JP |
9-303165 |
Nov 1997 |
JP |
10-37772 |
Feb 1998 |
JP |
10-220256 |
Aug 1998 |
JP |
10-288055 |
Oct 1998 |
JP |
10-288056 |
Oct 1998 |
JP |
11-062643 |
Mar 1999 |
JP |
11-270368 |
Oct 1999 |
JP |
9947800 |
Sep 1999 |
WO |
Continuations (1)
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Number |
Date |
Country |
Parent |
09/420451 |
Oct 1999 |
US |
Child |
09/888032 |
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US |