Claims
- 1. In a control system for an internal combustion engine having an intake passage, a fuel tank, a canister for adsorbing evaporative fuel generated from said fuel tank, a purging passage connecting said canister and said intake passage for allowing said evaporative fuel to be purged therethrough into said intake passage, said control system including a purge control valve arranged in said purging passage for controlling a flow rate of said evaporative fuel purged through said purging passage into said intake passage, operating condition-detecting means for detecting operating conditions of said engine, evaporative fuel concentration-dependent correction coefficient-setting means for setting an evaporative fuel concentration-dependent correction coefficient dependent on concentration of said evaporative fuel purged into said intake passage, purging flow rate correction coefficient-setting means for setting a purging flow rate correction coefficient, and purging flow rate-controlling means for controlling said purge control valve depending on said operating conditions of said engine detected by said operating condition-detecting means and said purging flow rate correction coefficient,
- the improvement comprising:
- purging region-setting means for setting a purge control valve-enabling region in which said purge control valve is made operative, and a purge control valve-disabling region in which said purge control valve is made inoperative, based on said operating conditions of said engine, and
- purging flow rate correction coefficient-updating control means for storing said purging flow rate correction coefficient to hold said purging flow rate correction coefficient when said engine is in said purge control valve-disabling region, and causing said purging flow rate correction coefficient-setting means to progressively set said purging flow rate correction coefficient to a larger value depending on said evaporative fuel concentration-dependent correction coefficient, after said engine has shifted from said purge control valve-disabling region to said purge control valve-enabling region.
- 2. A control system according to claim 1, wherein said purging flow rate correction coefficient-updating control means continues to hold said purging flow rate correction coefficient stored when it is detected based on said evaporative fuel concentration-dependent correction coefficient that said concentration of said evaporative fuel purged is high upon shifting of said engine from said purge control valve-disabling region to said purge control valve-enabling region.
- 3. A control system according to claim 1, wherein said purging flow rate correction coefficient-updating control means causes said purging flow rate correction coefficient-setting means to progressively set said purging flow rate correction coefficient to a larger value when it is detected based on said evaporative fuel concentration-dependent correction coefficient that said concentration of said evaporative fuel purged is low upon shifting of said engine from said purge control valve-disabling region to said purge control valve-enabling region.
- 4. A control system according to claim 1, wherein said purging flow rate-controlling means corrects a basic control amount dependent on operating conditions of said engine, by the use of said purging flow rate correction coefficient, to thereby set a desired value of said flow rate of said evaporative fuel purged.
Priority Claims (1)
Number |
Date |
Country |
Kind |
5-36094 |
Feb 1993 |
JPX |
|
Parent Case Info
This is a divisional of application Ser. No. 08/187,469 filed Jan. 28, 1994, now U.S. Pat. No. 5,469,833.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
63-57841 |
Mar 1988 |
JPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
187469 |
Jan 1994 |
|