Claims
- 1. A smart fuel injection system for an automobile, comprising:
a multi-cylinder engine having at least one fuel injector; an engine control unit configured to control multiple engine operations including air intake quantity, fuel injection pulse width, and coolant circulation; a plurality of sensors disposed throughout said engine and in communication with said engine control unit; said plurality of sensors including a plurality of injector head temperature sensors configured to directly measure a temperature at a head of each injector nozzle of each cylinder of said engine; and coolant control means in communication with said engine control unit and configured to regulate a quantity of engine coolant passing to said engine with substantial precision at any time during operation of said engine.
- 2. A smart fuel injection system as recited in claim 1, wherein said coolant control means comprises a smart coolant control valve having a continuously adjustable coolant flow aperture therein.
- 3. A smart fuel injection system as recited in claim 2, wherein said smart coolant control valve comprises:
a main housing defining an interior space and having an inlet portion and an outlet portion therein configured to permit engine coolant flow therebetween, said main housing having an adjustable coolant flow aperture therein, a plunger disposed within said main housing; plunger movement means configured to move said plunger in a controlled manner within said main housing to adjust a size of said coolant flow aperture;
- 4. A smart fuel injection system as recited in claim 3, wherein said smart coolant control valve further comprises an upper seal and a lower seal disposed within said main housing and defining an adjustable coolant flow aperture therebetween.
- 5. A smart fuel injection system as recited in claim 2, wherein said smart coolant control valve is in communication with said engine control unit.
- 6. A smart fuel injection system as recited in claim 2, wherein said adjustable coolant control aperture of said smart coolant control valve is regulated by said engine control unit.
- 7. A smart fuel injection system as recited in claim 2, wherein said engine control unit regulates said adjustable coolant control aperture of said smart coolant control valve based upon signals received from said plurality of sensors.
- 8. A smart fuel injection system as recited in claim 1, wherein said plurality of sensors include a coolant temperature sensor.
- 9. A smart fuel injection system as recited in claim 1, wherein said plurality of sensors further comprise:
a distributor ignition timing sensor; an admission manifold depression sensor; an air intake sensor; a battery voltage sensor; an air intake manifold temperature sensor; a crankshaft sensor; a combustion sensor; an air intake temperature sensor; a throttle butterfly switch sensor; a throttle sensor; an air flow sensor; and an Oxygen sensor.
- 10. A smart fuel injection system as recited in claim 1, wherein said coolant control means comprises a coolant valve system including a plurality of conventional coolant valves in parallel.
- 11. A smart fuel injection system as recited in claim 10, wherein said plurality of conventional coolant valves are in communication with said control unit.
- 12. A smart fuel injection system as recited in claim 10, wherein said plurality of conventional coolant valves are individually operable in either an open or closed configuration.
- 13. A smart fuel injection system for an automobile comprising:
a multi-cylinder engine having at least one fuel injector; an engine control unit configured to control a number of engine operations including air intake quantity, fuel injection pulse width, and coolant circulation; a plurality of sensors disposed throughout said engine and in communication with said engine control unit; a plurality of injector head temperature sensors configured to directly measure the temperature at a head of each injector nozzle of each cylinder of said engine; and a smart coolant control valve having a continuously adjustable coolant flow aperture therein.
- 14. A smart fuel injection system as recited in claim 13, further comprising an air intake calculator that utilizes signals from said plurality of sensors to determine an air intake quantity.
- 15. A smart fuel injection system as recited in claim 13, further comprising a feedback correction coefficient calculator for the air intake quantity that utilizes signals from said plurality of sensors to determine a feedback correction coefficient for the air intake quantity.
- 16. A smart fuel injection system as recited in claim 13, further comprising a fuel injection pulse width calculator that utilizes signals from said plurality of sensors to determine a fuel injection pulse width.
- 17. A smart fuel injection system as recited in claim 13, further comprising a feedback correction coefficient calculator for the fuel injection pulse width that utilizes signals from said plurality of sensors to determine a feedback correction coefficient calculator for the fuel injection pulse width.
- 18. A smart fuel injection system as recited in claim 13, further comprising a feedback correction coefficient calculator for the smart coolant control valve that utilizes signals from said plurality of sensors to determine a feedback correction coefficient for the smart coolant control valve.
- 19. A smart fuel injection system as recited in claim 13, wherein said coolant control valve further comprises:
a main housing defining an interior space and having an inlet portion and an outlet portion therein configured to permit engine coolant flow therebetween, said main housing having an adjustable coolant flow aperture therein; a plunger disposed within said main housing; and plunger movement means configured to move said plunger in a controlled manner within said main housing to adjust a size of said coolant flow aperture.
- 20. A smart fuel injection system for an automobile comprising:
a multi-cylinder engine having at least one fuel injector; an engine control unit configured to control a number of engine operations including air intake quantity, fuel injection pulse width, and coolant circulation; a plurality of sensors disposed throughout said engine and in communication with said engine control unit; a plurality of injector head temperature sensors configured to directly measure the temperature at a head of each injector nozzle of each cylinder of said engine; a smart coolant control valve having a continuously adjustable coolant flow aperture therein; an air intake calculator for determining an air intake quantity; a fuel injection pulse width calculator for determining a fuel injection pulse width; a smart coolant control valve calculator for determining a size for said coolant flow aperture of said smart coolant control valve.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of co-pending U.S. Provisional Patent Application Serial No. 60/311747 filed Aug. 11, 2001, which is incorporated by reference herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60311747 |
Aug 2001 |
US |