IP Library › Granted Patent US 10,358,998
Granted Patent B2
US 10,358,998 · App. 15/474,386 · Granted Jul 23, 2019

Method and system for a humidity sensor in a vehicle

Inventors: Aed M. Dudar (Canton, MI); Kenneth James Miller (Canton, MI); Douglas Raymond Martin (Canton, MI)
Assignee: Ford Global Technologies, LLC
F02D41/222B60H1/32331F02M25/028F02M25/0225F02M25/0227F02M26/46F02M26/49F02B29/04F02D2200/0418F02M26/22Y02T10/40
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Quick Facts
Patent No.
US 10,358,998
App. No.
15/474,386
Granted
Jul 23, 2019
Kind
B2
Abstract

A vehicle includes an engine air intake having a humidity sensor, and a system having a nozzle positioned in the air intake and fluidly connected to a reservoir. The vehicle has a controller configured to activate the system to deliver fluid from the nozzle into the intake while the engine is inoperative and generate a diagnostic code in response to a change in humidity measured by the sensor being less than a threshold value. A method of controlling a vehicle includes measuring a baseline humidity (H 1 ) using a humidity sensor in an air intake of an engine, and controlling a misting system to mist fluid from a reservoir into the air intake and adjacent to the humidity sensor while the engine is inoperative. The method measures a post-fluid delivery humidity (H 2 ) using the humidity sensor, and generates a diagnostic code based on a comparison of H 1 and H 2.

Claims (21)

1. A vehicle comprising:

an air intake for an engine having a humidity sensor;

a system having a reservoir fluidly connected to a nozzle positioned in the air intake; and

a controller configured to activate the system to deliver fluid from the nozzle into the intake for evaporation therein while the engine is inoperative and generate a diagnostic code in response to a change in humidity measured by the sensor being less than a threshold value.

2. The vehicle of claim 1 further comprising a heat exchanger having a drain for condensed water, the drain fluidly connected to an inlet of the reservoir, the heat exchanger being one of an air-conditioning evaporator, a charge air cooler, and an exhaust gas recirculation cooler.

3. The vehicle of claim 1 wherein the air intake includes an exhaust gas recirculation (EGR) loop, wherein the humidity sensor is positioned within the EGR loop.

4. The vehicle of claim 1 wherein the air intake has a throttle, the humidity sensor positioned downstream of the throttle.

5. The vehicle of claim 1 wherein the controller is configured to measure a baseline humidity (H 1 ) prior to activating the system, and measure a post-atomizing humidity (H 2 ) within a predetermined time period following activating the system; and

wherein the controller is further configured to generate the diagnostic code in response to the change in humidity being a difference between H 2 and H 1 , the difference being less than the threshold value.

6. The vehicle of claim 5 wherein the controller is configured to crank the engine without delivering fuel thereto to draw outside air through the air intake prior to measuring H 1 .

7. The vehicle of claim 1 wherein the controller is further configured to activate the system to deliver fluid from the nozzle into the intake while the engine is inoperative and in response to a humidity measured by the humidity sensor being below a threshold humidity.

8. The vehicle of claim 1 wherein the reservoir has a fluid level sensor; and

wherein the controller is configured to receive a signal indicative of an amount of fluid in the reservoir from the fluid level sensor, and activate the system to deliver fluid from the nozzle into the intake while the engine is inoperative in response to the amount of fluid being above a threshold value.

9. The vehicle of claim 1 wherein the reservoir has a drain valve fluidly connecting the reservoir to an outside environment.

10. The vehicle of claim 9 wherein the controller is configured to open the drain valve to empty the reservoir in response to receiving a signal indicative of an outside air temperature being below a threshold.

11. The vehicle of claim 9 wherein the reservoir has a fluid level sensor; and

wherein, during operation of the vehicle, the controller is configured to (i) open the drain valve in response to a signal indicative of an amount of fluid in the reservoir from the fluid level sensor being above a first threshold (ii) and close the drain valve in response to the signal being below a second threshold, the second threshold being less than the first threshold.

12. The vehicle of claim 1 wherein the system comprises one of a diesel exhaust fluid system containing the reservoir and a windshield washing system containing the reservoir.

13. The vehicle of claim 1 wherein the controller is configured to generate a diagnostic flag indicating rationality of the sensor in response to the change in humidity measured by the sensor being greater than the threshold value.

14. The vehicle of claim 1 wherein the nozzle is configured to disperse fluid from the reservoir from bulk liquid form into droplet form, a mean diameter of droplets provided into the reservoir being less than 100 micrometers.

15. The vehicle of claim 1 wherein the controller is further configured to activate the system while the engine is inoperative and within a predetermined time period after a vehicle drive cycle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2017
From: DUDAR, AED M.; MILLER, KENNETH JAMES; MARTIN, DOUGLAS RAYMOND
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 041805/0315 →
Continuity (1)
Related Publication 20180283307A1 · Oct 4, 2018