IP Library Granted Patent US 11,274,618
Granted Patent B2
US 11,274,618 · App. 16/763,092 · Granted Mar 15, 2022

Engine fuel supply control strategy

Inventors: Martin N. Andersson (Caro, MI); Cyrus M. Healy (Ubly, MI); Dale P. Kus (Cass City, MI)
Assignee: Walbro LLC
F02D41/123F02D31/003F02D41/12F02D41/1475F02D37/02F02D41/08F02D2041/001F02D2200/101F02D2700/02
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Quick Facts
Patent No.
US 11,274,618
App. No.
16/763,092
Granted
Mar 15, 2022
Kind
B2
Abstract

In at least some implementations, a method of controlling a fuel-to-air ratio of a fuel and air mixture supplied to an engine, includes the steps of determining an engine deceleration event, determining the number of engine revolutions required for the engine speed to decrease from one speed threshold to another speed threshold, comparing the number of engine revolutions determined above against a revolution threshold, and making the fuel and air mixture richer if the number of engine revolutions determined above is greater than the revolution threshold. The method may also include determining if, before the engine stabilized at a stable engine speed (which may be an engine idle speed), the engine speed decreased below the stable engine speed as the engine decelerated to the stable engine speed from a speed above the stable engine speed, and making the fuel and air mixture leaner if the determination is affirmative.

Claims (29)

1. A method of controlling a fuel-to-air ratio of a fuel and air mixture supplied to an operating engine, comprising the steps of:

(a) determining an engine deceleration event;

(b) determining the number of engine revolutions required for the engine speed to decrease from one speed threshold to another speed threshold;

(c) comparing the number of engine revolutions determined in (b) against a revolution threshold; and

(d) making the fuel and air mixture richer if the number of engine revolutions determined in (b) is greater than the revolution threshold.

2. The method of claim 1 wherein step (a) includes comparing a rate of deceleration against a deceleration rate threshold.

3. The method of claim 1 wherein said one speed threshold is below an expected operating range of speeds for the engine.

4. The method of claim 1 wherein the revolution threshold is between 10 revolutions and 300 revolutions.

5. The method of claim 1 which also comprises the following steps:

(e) determining if, before the engine stabilized at a stable engine speed, the engine speed decreased below the stable engine speed as the engine decelerated to the stable engine speed from a speed above the stable engine speed; and

(f) making the fuel and air mixture leaner if the determination in (e) was affirmative.

6. The method of claim 5 wherein the stable engine speed is an idle speed of the engine.

7. The method of claim 1 wherein step (a) includes determining if the engine speed is above a first speed threshold for a first threshold number of engine revolutions and when the engine speed decreases below the first speed threshold.

8. The method of claim 7 wherein the two speed thresholds set forth in step (b) are lower speeds than said first speed threshold.

9. The method of claim 1 wherein an engine deceleration event is determined by a decrease in engine speed of between 10 rpm and 4,000 rpm from a first speed threshold.

10. The method of claim 9 wherein in step (b) said one speed threshold is lower than the first speed threshold by greater than the magnitude of the decrease in engine speed needed to confirm a deceleration event.

11. The method of claim 1 wherein said another speed threshold is greater than or equal to a nominal idle speed of the engine.

12. The method of claim 11 wherein said another speed threshold is between 2,000 rpm and 5,000 rpm.

13. The method of claim 1 wherein the richness of the fuel and air mixture is controlled at least in part by an electrically actuated valve and wherein the richness of the fuel and air mixture is changed by changing the operation of the valve.

14. The method of claim 13 wherein the valve controls a flow of fuel and wherein closing the valve for a longer duration of time over a given time period results in a leaner fuel and air mixture and closing the valve for a shorter duration of time for said given time period results in a richer fuel and air mixture.

15. The method of claim 13 wherein the valve controls a flow of air and wherein closing the valve for a longer duration of time over a given time period results in a richer fuel and air mixture and closing the valve for a shorter duration of time for said given time period results in a leaner fuel and air mixture.

16. A method of controlling a fuel-to-air ratio of a fuel and air mixture supplied to an operating engine, comprising the steps of:

(a) determining an engine deceleration event;

(b) determining the time required for the engine speed to decrease from one speed threshold to another speed threshold;

(c) comparing the time determined in (b) to a threshold; and

(d) making the fuel and air mixture richer when the time determined in (b) is greater than the threshold.

17. The method of claim 16 wherein the time is determined based upon the number of engine revolutions required for the engine speed to decrease from one speed threshold to another speed threshold.

18. The method of claim 17 wherein step (c) includes comparing the number of engine revolutions required for the engine speed to decrease from said one speed threshold to said another speed threshold against a revolution threshold.

19. The method of claim 18 wherein the revolution threshold is between 10 revolutions and 300 revolutions.

Assignments (6)
SECURITY INTEREST Recorded Mar 25, 2026
From: OVERDRIVE ACQUISITION, LLC
To: POLARIS INDUSTRIES INC.
Reel/Frame 075242/0950 →
STATEMENT REGARDING RELEASE OF LIENS IN PATENTS, INCLUDING LIEN IN FAVOR OF GLAS USA LLC RECORDED AT R/F 071674/0688 Recorded Mar 25, 2026
From: FIRST BRANDS GROUP HOLDINGS, LLC
To: WALBRO LLC (FORMERLY KNOWN AS WALBRO ENGINE MANAGEMENT, L.L.C.)
Reel/Frame 075247/0779 →
FIRST LIEN INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jun 18, 2025
From: AIRTEX INDUSTRIES, LLC; AIRTEX PRODUCTS, LP; APC INTERMEDIATE HOLDINGS, LLC; APC PARENT, LLC; ASC INDUSTRIES, INC.; AUTOLITE OPERATIONS LLC; AVM EXPORT, INC.; BPI ACQUISITION COMPANY, LLC; BPI EC, LLC; BPI HOLDINGS INTERNATIONAL, LLC; BRAKE PARTS INC CHINA LLC; BRAKE PARTS INC INDIA LLC; BRAKE PARTS INC LLC; CARDONE INDUSTRIES, INC.; CARRAND COMPANIES, INC.; CARTER CARBURETOR HOLDINGS, LLC; CARTER CARBURETOR, LLC; CARTER FUEL EXPORT, INC.; CARTER FUEL SYSTEMS, LLC; CHAMPION LABORATORIES, INC.; CWD HOLDING, LLC; CWD INTERMEDIATE HOLDINGS I, LLC; CWD INTERMEDIATE HOLDINGS II, LLC; CWD, LLC; DALTON CORPORATION; DALTON CORPORATION, KENDALLVILLE; MANUFACTURING FACILITY DALTON CORPORATION, ASHLAND; MANUFACTURING FACILITY DALTON CORPORATION, STRYKER MACHINING FACILITY CO.; DALTON CORPORATION, WARSAW MANUFACTURING FACILITY; EAGLE CASTING, LLC; EAGLE MACHINING, LLC; FIRST BRANDS GROUP INTERMEDIATE, LLC; FIRST BRANDS GROUP, LLC; FRAM GROUP IP LLC; FRAM GROUP OPERATIONS LLC; FRAMAUTO HOLDINGS, LLC; FUEL FILTER TECHNOLOGIES, INC.; GLOBAL REMAN VENTURES, LLC; HEATHERTON HOLDINGS, LLC; HOPKINS ACQUISITION, INC.; HOPKINS MANUFACTURING CORPORATION; HORIZON EURO FINANCE LLC; HORIZON GLOBAL AMERICAS INC.; HORIZON GLOBAL COMPANY LLC; HORIZON GLOBAL CORPORATION; HORIZON INTERNATIONAL HOLDINGS LLC; IBI INTERNATIONAL HOLDING COMPANY, INC.; INTERNATIONAL BRAKE INDUSTRIES, INC.; JASPER ACQUISITION CORP.; JASPER RUBBER PRODUCTS, INC.; KTRI HOLDINGS, INC.; KTRI OFFSHORE HOLDINGS, LLC; LONGMAN ENTERPRISES, INC.; PHNX ACQUISITION CORP.; PREMIER MARKETING GROUP, LLC; PYLON MANUFACTURING CORP.; PYLON SOUTH BEND, INC.; QUALIS AUTOMOTIVE, L.L.C.; QUALIS ENTERPRISES, LLC; QUALITOR ACQUISITION INC.; QUALITOR AUTOMOTIVE, LLC; QUALITOR SUBSIDIARY H, INC.; QUALITOR SUBSIDIARY S, INC.; QUALITOR, INC.; REMAN MANAGEMENT INTERNATIONAL LLC; SDC TX, LLC; SMART CHOICE, LLC; SPECIALTY PUMPS GROUP, INC.; STRONGARM, LLC; TAE BRAKES, LLC; TAE CHINA HOLDINGS, INC.; TMD INTERNATIONAL HOLDINGS LLC; TMD MEXICO LLC; TOLEDO MOLDING & DIE, LLC; TRANSPORTATION AFTERMARKET ENTERPRISE, LLC; TRICO HOLDING CORPORATION; TRICO PRODUCTS CORPORATION; TRICO TECHNOLOGIES CORPORATION; TRIDONEX USA LLC; UCI ACQUISITION HOLDINGS (NO. 4) LLC; UCI INTERNATIONAL HOLDINGS PARENT, INC.; UCI INTERNATIONAL HOLDINGS, INC.; UCI INTERNATIONAL, LLC; UCI PENNSYLVANIA, INC.; UCI-AIRTEX HOLDINGS, INC.; UNITED COMPONENTS, LLC; UNIVERSAL AUTO FILTER LLC; VIPER ACQUISITION I, INC.; VIPER ACQUISITION, INC.; WALBRO LLC; WALBRO MIDCO LLC; WEM US CO.
To: GLAS USA LLC
Reel/Frame 071674/0688 →
RELEASE OF SECURITY INTEREST Recorded Oct 10, 2023
From: JPMORGAN CHASE BANK, N.A.
To: WALBRO LLC
Reel/Frame 065198/0833 →
SECURITY INTEREST Recorded Nov 8, 2021
From: WALBRO LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 058055/0101 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2020
From: ANDERSSON, MARTIN N.; HEALY, CYRUS M.; KUS, DALE P.
To: WALBRO LLC
Reel/Frame 052644/0749 →
Continuity (2)
Provisional Application 62590867 · Nov 27, 2017
Related Publication 20200291881A1 · Sep 17, 2020