Claims
- 1. An electronic control system for an internal combustion control engine comprising:
- a plurality of first sensing means, such as an accelerator pedal position sensor, brake pedal position sensor and torque transmission mechanism sensor, for measuring a driver's action taken according to a driver's intention as to an immediate change in the operating condition of the vehicle and the engine;
- a plurality of second sensing means, such as vehicle speed sensor, driveline torque sensor, and engine exhaust gas sensor, for measuring operating physical quantities of the vehicle;
- a selecting means which classifies a driver's action according to outputs from said first sensing means, and which classifies the condition of said vehicle according to outputs from said second sensing means, to select one engine control operating condition from among a plurality of engine control operating conditions, such as idle control, acceleration control, deceleration control, fuel cut off control, and air-to-fuel ratio control;
- a target reference setting means for selecting one among a plurality of target references in accordance with the engine control operating condition selected by said selecting means; and
- a control means for manipulating actuators for controlling said engine in response to the set target reference.
- 2. A system according to claim 1, wherein said target reference setting means sets a range of values of the target reference in accordance with the measured driver's intent and the conditions of the vehicle.
- 3. A system according to claim 1, wherein said control means calculates and supplies manipulating values to said actuators such that said engine attains the set target reference.
- 4. A system according to claim 1, wherein said target reference setting means sets an air-fuel ratio as said target reference when the selected operating condition of said engine is any one of acceleration control, deceleration control and A/F control and sets an engine speed as said target reference when the selected operating condition is either of idle speed control and fuel cut-off control.
- 5. A system according to claim 4, wherein said plurality of first sensors includes an accelerator pedal position sensor for detecting an accelerator pedal position indicative of said driver's intent,
- said target reference setting means sets an air-fuel ratio as said set target reference when it is determined according to an output of said accelerator pedal position sensor that an accelerator pedal is depressed and sets a desired value of engine speed as said selected target reference when it is determined that said accelerator pedal is not depressed.
- 6. A system according to claim 1, wherein said second sensing means further comprises means for measuring operating physical quantities of the engine, such as engine speed sensor, exhaust gas sensor, intake air flow sensor and engine temperature sensor, and
- wherein said second discriminating means further identifies the condition of said engine.
- 7. A system according to claim 2, wherein said target reference setting means sets a range of values of the target reference in accordance with the measured driver's intent, the conditions of the vehicle and a driver's preference.
- 8. A system according to claim 3, wherein said control means calculates the manipulating values of said actuators in accordance with at least one predictive calculation model selected among a plurality of predictive calculation models according to the set target reference.
- 9. A system according to claim 8, wherein when said selecting means selects as the selected operating condition of said engine any one of acceleration control, deceleration control and cruising control in accordance with an output from at least one of said first and second sensors, said control means predicts an intent of said driver for engine operation in accordance with a change in the output of said at least one sensor to determine manipulating values for said actuators in accordance with said predictive calculation model based on said prediction.
- 10. A system according to claim 8, wherein said control means updates said predictive calculation model according to outputs of said second sensors.
- 11. A system according to claim 8, wherein said second sensors include an intake air flow sensor for measuring a rate of intake air flow and said predictive calculation model includes a predicted value of intake air flow, whereby when the operating condition selected by selecting means does not change, said predicted value is calculated on the basis of a plurality of measured values of said intake air flow sensor on the assumption that variation of said intake air flow continues until the next combustion cycle.
- 12. A system according to claim 11, wherein when the operating condition selected by said selecting means does not change, a measured value of intake air flow on a current combustion cycle is selected as said predicted value of intake air flow in said predictive calculation model.
- 13. A system according to claim 8, wherein said first sensors include an accelerator pedal position sensor for detecting a position of an accelerator pedal, said second sensors include a sensor for measuring a load on said engine, and an intake air flow sensor for measuring a rate of intake air flow, and said actuators include at least one fuel injector,
- said target reference setting means determines a desired value of air-fuel ratio in accordance with a rate of change of the accelerator pedal position and a value indicating the engine load,
- said control means determines a predicted value of intake air flow in accordance with a change of a measured value of intake air flow measured by said intake air flow sensor to thereby calculate a fuel injection quantity as said manipulating value from said predictive calculation model according to said predicted value and then supplies the same to said fuel injector to attain said determined desired value of air-fuel ratio.
- 14. A system according to claim 8, wherein said target reference setting means updates said target reference, and
- said control means also updates said predictive calculation model.
- 15. A system according to claim 14, wherein said target reference setting means updates said target references for each of said operating conditions of said engine in accordance with long-term measured results of output data of said first and second sensors.
- 16. A system according to claim 14, wherein said control means updates said predictive calculation model in accordance with short-term measured results of output data of said first and second sensors.
- 17. A system according to claim 14, further comprising measuring means for measuring combustion results of fuel from outputs of said second sensors to obtain said measured results,
- said control means updates correction factors of said predictive calculation model in accordance with said measured results, and
- said target reference setting means updates said set target reference in accordance with said measured results.
- 18. A system according to claim 14, wherein said target reference setting means updates said set target reference in accordance with a deviation between a reference value indicated by said measured results and a value of said set target reference, and
- said control means updates a correction factor of said predictive calculation model in accordance with a deviation between a reference value indicated by said measured results and a value of said set target reference.
- 19. A system according to claim 8, wherein said actuators include at least one fuel injector, and said predictive calculation model is one for predictive calculation of a fuel injection quantity for attaining said value of said set target reference.
- 20. A system according to claim 8, wherein said actuators include ignition plugs, and said predictive calculation model is one for predictive calculation of ignition timings for said ignition plugs for attaining said value of said set target reference.
- 21. A system according to claim 8, wherein said control means is responsive to the combustion results of each said cylinder to update correction factors of said predictive calculation model for each said cylinder.
- 22. A system according to claim 17, wherein said measuring means measures said combustion results in such a manner that measurements are made in synchronism with given rotational angles of a crankshaft of said engine in consideration of time delays of measuring timings due to the flow of clusters of intake air, fuel and exhaust gas having bearing on the combustion in each cylinder and sensor positions for measuring said clusters of gases for each said cylinder so as to track and measure said clusters of gases and thereby measure combustion results for each said cylinder.
Priority Claims (1)
Number |
Date |
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62-33256 |
Feb 1987 |
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Parent Case Info
This is a continuation of application Ser. No. 07/155,391, filed Feb. 12, 1988, now abandoned, which is a continuation-in-part of (1) application Ser. No. 46,388, filed May 6, 1987, entitled "Condition Adaptive-Type Control Method for Internal Combustion Engines", which issued on Aug. 1, 1989 as U.S. Pat. No. 4,853,720; and (2) application Ser. No. 092,613, filed Sept. 3, 1987, U.S. Pat. No. 4,887,216, entitled "Method of Engine control Timed to Engine Revolution".
US Referenced Citations (8)
Foreign Referenced Citations (2)
Number |
Date |
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3520050 |
Dec 1985 |
DEX |
2155668 |
Sep 1985 |
GBX |
Non-Patent Literature Citations (4)
Entry |
Patent Abstract of Japan, vol. 10, No. 277 (M-519) [2333], 19th Sep. 1986; & JP-A-61-98 936 (Toyota Motor Corp. 17-05-1986). |
Patent Abstracts of Japan, vol. 7, No. 102 (M-211) [1247] 30th Apr. 1983; & JP-A-58 23 240 (Toyota Jidosha Kogyo K.K.) 10-02-1983. |
Patent Abstracts of Japan, vol. 11, No. 82 (M-571) [2529], 12th Mar. 1987, p. 94 M 571; & JP-A-61 237 854 (Mazda Motor Corp.) 23-10-1986 (Cat. A). |
Systems and Controls, vol. 24, No. 5, pp. 306-312, 1980 (No Month Provided). |
Continuations (1)
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Date |
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Parent |
155391 |
Feb 1988 |
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Continuation in Parts (2)
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Date |
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46388 |
May 1987 |
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Parent |
92613 |
Sep 1987 |
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