IP Library › Granted Patent US 8,984,934
Granted Patent B2
US 8,984,934 · App. 13/799,262 · Granted Mar 24, 2015

Method and system to validate a fuel level indicator in a vehicle

Inventors: Michael Stephen Sweppy (Manchester, MI); Robert Roy Jentz (Westland, MI); Aed M. Dudar (Canton, MI)
Assignee: Ford Global Technologies, LLC
G01F22/00G01F23/32G01F25/0061G01F25/0069
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Quick Facts
Patent No.
US 8,984,934
App. No.
13/799,262
Granted
Mar 24, 2015
Kind
B2
Abstract

A vehicle is provided with a controller and a fuel system having a fuel tank, a fuel level indicator (FLI), and a pressure sensor. The controller is configured to: pull a vacuum on the tank from an initial pressure to a reference pressure, and provide a diagnostic code in response to comparing a fuel level indicated by the FLI to a rate of pressure change in the tank. A method for performing a fuel level indicator (FLI) diagnostic for a vehicle is provided. A vacuum is pulled on the fuel tank from an initial pressure to a reference pressure. A diagnostic code is provided in response to comparing a fuel level indicated by an FLI to a rate of pressure change.

Claims (27)

1. A vehicle comprising:

an engine;

a fuel system for the engine having a fuel tank, a first fuel level indicator (FLI), a vent valve connecting the fuel tank to atmosphere, a purge valve connecting the fuel tank to an engine intake, and a pressure sensor; and

a controller configured to: (i) pull a vacuum on the fuel tank from an initial pressure to a reference pressure to determine a rate of pressure change in the fuel tank, (ii) command the vent valve to a closed position, command the purge valve to an open position, and operate the engine to pull the vacuum on the fuel tank, (iii) inferring a fuel level using a correlation with the rate of pressure change in the tank, and (v) provide a diagnostic code based on a comparison of a fuel level indicated by the first FLI to the inferred fuel level.

2. The vehicle of claim 1 wherein the fuel system further comprises a pump positioned between the vent valve and the fuel tank;

wherein the controller is further configured to command the purge valve to a closed position, command the vent valve to an open position, and operate the pump to pull the vacuum on the fuel tank.

3. A vehicle comprising:

a fuel system having a saddle fuel tank having active and passive sides with first and second fuel level indicators (FLI), respectively, and a tank pressure sensor; and

a controller configured to: pull a vacuum on the tank from an initial pressure to a reference pressure to determine a rate of tank pressure change, compare a fuel level indicated by the first FLI to the rate, and provide a diagnostic code.

4. The vehicle of claim 3 wherein the controller is further configured to provide an inferred fuel level using the rate of tank pressure change, and provide the diagnostic code in response to (i) comparing the fuel level indicated by the first FLI to the inferred fuel level and (ii) comparing another fuel level indicated by the second FLI to the inferred fuel level.

5. The vehicle of claim 4 wherein the controller provides the diagnostic code in response to a low level in the first FLI, a high level in the second FLI, and a low inferred fuel level.

6. The vehicle of claim 4 wherein the controller provides the diagnostic code in response to a high level in the first FLI, a low level in the second FLI, and a low inferred fuel level.

7. The vehicle of claim 4 wherein the controller provides the diagnostic code in response to a high level in the first FLI, a low level in the second FLI, and a high inferred fuel level.

8. The vehicle of claim 4 wherein the controller provides the diagnostic code in response to a low level in the first FLI, a low level in the second FLI, and a high inferred fuel level.

9. The vehicle of claim 4 wherein the controller provides the diagnostic code in response to a high level in the first FLI, a high level in the second FLI, and a low inferred fuel level.

10. The vehicle of claim 4 wherein the controller provides the diagnostic code in response to a low level in the first FLI, a high level in the second FLI, and a high inferred fuel level.

11. The vehicle of claim 10 wherein the controller is further configured to pull the vacuum in-on the fuel-tank in response to the fuel level indicated by the first FLI remaining generally constant for a predetermined time period while the vehicle is operating.

12. A method for performing a fuel level indicator (FLI) diagnostic for a vehicle, comprising:

pulling a vacuum on a fuel tank from an initial pressure to a reference pressure to determine a rate of tank pressure change;

inferring a fuel level using a correlation with the rate;

comparing a fuel level indicated by a first FLI to the inferred fuel level;

comparing another fuel level indicated by a second FLI to the inferred fuel level; and

providing a diagnostic code based on the comparisons.

13. The method of claim 12 wherein the vacuum is pulled in response to satisfying an entry condition.

14. The method of claim 13 wherein the entry condition is a vehicle shut down event.

15. The method of claim 13 wherein the entry condition is an engine off state in a hybrid vehicle.

16. The method of claim 13 wherein the entry condition is the fuel level indicated by the FLI remaining generally constant for a predetermined time period while the vehicle is operating.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2013
From: SWEPPY, MICHAEL STEPHEN; JENTZ, ROBERT ROY; DUDAR, AED M.
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 030095/0748 →
Continuity (1)
Related Publication 20140260576A1 · Sep 18, 2014