Claims
- 1. A two-cycle engine, comprising:
a cylinder; a piston moveable in the cylinder for compressing an air/fuel mixture to be ignited in the cylinder; a first sensor for detecting an engine speed; a fuel source supplying fuel to the engine; and a controller for controlling at least one of the first sensor and the fuel source; wherein the controller determines a moving average engine speed corresponding to an average of at least two detected engine speeds.
- 2. The engine of claim 1, wherein the controller further controls an amount of fuel supplied from the fuel source to the engine as a function of the engine speed detected by the first sensor and the moving average engine speed.
- 3. The engine of claim 2, wherein the controller further comprises at least one map, the at least one map containing a relationship between the engine speed, the moving average engine speed and the amount of fuel supplied to the engine.
- 4. The engine of claim 3, wherein an output of the at least one map is a solenoid duty cycle that controls the amount of fuel supplied to the engine as a function of the engine speed and the moving average engine speed.
- 5. The engine of claim 4, wherein the solenoid is disposed adjacent to the fuel source.
- 6. The engine of claim 5, wherein the amount of fuel supplied to the engine is altered by the solenoid, which is controlled by the controller.
- 7. A method of operating an engine, comprising:
determining an engine speed; determining a moving average engine speed; and determining an amount of fuel to be supplied to the engine corresponding to the engine speed and the moving average engine speed.
- 8. The method of claim 7, wherein the moving average engine speed is determined by an average of at least two engine speeds.
- 9. The method of claim 8, wherein determining the amount of fuel to be supplied to the engine further comprises determining the duty cycle of a solenoid from a map corresponding to the engine speed and the moving average engine speed.
- 10. The method of claim 9, wherein the engine speed is determined with the assistance of a sensor disposed near a rotating shaft of the engine and the moving average engine speed is determined by a controller connected to the engine.
- 11. A two-cycle engine, comprising:
a cylinder; a piston moveable in the cylinder for compressing a fuel-air mixture to be ignited in the cylinder; a first sensor for detecting an engine speed; a second sensor for detecting a temperature; a fuel source for supplying fuel to the engine; and a controller that controls an amount of fuel flowing from the fuel source to the engine as a function of the engine speed detected by the first sensor and the temperature detected by the second sensor.
- 12. The engine of claim 11, wherein the controller further comprises:
at least one map comprising a relationship between the engine speed and the detected temperature.
- 13. The engine of claim 12, further comprising an exhaust pipe, wherein the second sensor is disposed adjacent to the exhaust pipe.
- 14. The engine of claim 13, wherein the first sensor is disposed adjacent a rotating shaft of the engine.
- 15. The engine of claim 14, further comprising a solenoid connected to the fuel supply, the solenoid being controlled by the controller.
- 16. The engine of claim 15, wherein the controller is an electronic control unit.
- 17. The engine of claim 16, wherein the at least one map further comprises a relationship with the solenoid operation.
- 18. The engine of claim 17, wherein the solenoid operation is obtained from the map as a function of the engine speed and the exhaust gas temperature.
- 19. A method of operating an engine, comprising:
determining an engine speed; determining one of an exhaust gas temperature and an exhaust pipe temperature; and controlling an amount of fuel flow into the engine according to the determined engine speed and at least one of the exhaust gas temperature and the exhaust pipe temperature.
- 20. The method of claim 19, wherein the engine speed is determined by a sensor disposed adjacent to a rotating shaft of the engine, the temperature is determined by a sensor disposed adjacent to an exhaust pipe, and the amount of fuel flow is controlled by a solenoid.
- 21. The method of claim 19, wherein the engine speed is determined by a sensor disposed adjacent to a rotating shaft of the engine, the temperature is determined by a sensor disposed adjacent to an exhaust pipe, and the amount of fuel flow is controlled by an electronic fuel injection system.
- 22. The method of claim 20, wherein controlling the amount of fuel flow further comprises obtaining the operation of the solenoid from a map of the determined engine speed and at least one of the determined exhaust gas temperature and the determined exhaust pipe temperature.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of priority to U.S. application Ser. No. 60/344,052, filed Jan. 3, 2002, the contents of which are herein incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60344052 |
Jan 2002 |
US |