IP Library › Granted Patent US 11,760,170
Granted Patent B2
US 11,760,170 · App. 17/218,554 · Granted Sep 19, 2023

Olfaction sensor preservation systems and methods

Inventors: Sibu Varughese (Sterling Heights, MI); Martin Nespolo (Grosse Pointe Woods, MI); Thomas Krzyzak (Livonia, MI); Gareth Webb (New Hudson, MI); Wilson Yim (Troy, MI); Matthew Johnson (Royal Oak, MI)
Assignee: DENSO International America, Inc.
B60H3/0085B60H1/008
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Quick Facts
Patent No.
US 11,760,170
App. No.
17/218,554
Granted
Sep 19, 2023
Kind
B2
Abstract

A vehicle system includes: an olfaction sensor comprising: a blower configured to draw air from a passenger cabin through an inlet; a sensor located downstream of the inlet and including one or more proteins configured to measure an amount of a chemical in the air passing the sensor; and a purge source configured to selectively flows a purge gas into the sensor; and a control module configured to selectively take one or more remedial actions based on the amount of the chemical in the air.

Claims (34)

1. A vehicle system, comprising:

an olfaction sensor disposed within a heating ventilation and air conditioning (HVAC) system of the vehicle, the olfaction sensor comprising:

a housing having an inlet;

a blower configured to draw air from a passenger cabin through the inlet;

a blower control module configured to selectively turn the blower on and to selectively turn the blower off;

a sensor disposed within the housing and located downstream of the inlet and including one or more proteins configured to measure an amount of a chemical in the air passing the sensor,

wherein the sensor is configured to:

capture a first measurement while the blower control module has the blower off;

capture a second measurement while the blower control module has the blower on; and

determine the amount of the chemical in the air based on a difference between the first and second measurements; and

a purge source disposed within the housing and configured to selectively flow a purge gas into the sensor; and

a control module configured to selectively take one or more remedial actions based on the amount of the chemical in the air.

2. The vehicle system of claim 1 wherein the one or more proteins are configured to measure the amount of volatile organic compounds in the air.

3. The vehicle system of claim 1 wherein the one or more proteins are configured to measure the amount of particulate in the air.

4. The vehicle system of claim 1 wherein the purge gas is an inert gas.

5. The vehicle system of claim 1 further comprising a purge control module configured to actuate a valve of the purge source and flow the purge gas into the sensor after the measurement by the sensor.

6. The vehicle system of claim 1 further comprising a vacuum device configured to selectively vacuum gas out of the sensor.

7. The vehicle system of claim 6 further comprising a vacuum control module configured to turn on the vacuum device and to vacuum gas out of the sensor after the measurement by the sensor.

8. A vehicle system, comprising:

an olfaction sensor disposed within a heating ventilation and air conditioning (HVAC) system of the vehicle, the olfaction sensor comprising:

a housing having an inlet;

a blower disposed within the housing and configured to draw air from a passenger cabin through the inlet;

a blower control module configured to selectively turn the blower on and to selectively turn the blower off; and

an optical sensor disposed within the housing and located downstream of the inlet and configured to optically measure an amount of a chemical in the air passing the optical sensor,

wherein the optical sensor is configured to:

capture a first optical measurement while the blower control module has the blower off;

capture a second optical measurement while the blower control module has the blower on; and

determine the amount of the chemical in the air based on a difference between the first and second optical measurements; and

a control module configured to selectively take one or more remedial actions based on the amount of the chemical in the air.

9. The vehicle system of claim 8 further comprising a purge source configured to selectively flow a purge gas into the optical sensor.

10. The vehicle system of claim 9 further comprising a purge control module configured to actuate a valve of the purge source and flow the purge gas into the optical sensor after the measurement by the optical sensor.

11. The vehicle system of claim 8 further comprising a vacuum device configured to selectively vacuum gas out of the optical sensor.

12. The vehicle system of claim 11 further comprising a vacuum control module configured to turn on the vacuum device and to vacuum gas out of the optical sensor after the measurement by the optical sensor.

13. The vehicle system of claim 8 wherein the optical sensor includes one of a photoelectric sensor and a camera.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2021
From: VARUGHESE, SIBU; NESPOLO, MARTIN; KRZYZAK, THOMAS; WEBB, GARETH; YIM, WILSON; JOHNSON, MATTHEW
To: DENSO INTERNATIONAL AMERICA, INC.
Reel/Frame 055781/0771 →
Continuity (2)
Provisional Application 63067937 · Aug 20, 2020
Related Publication 20220055457A1 · Feb 24, 2022