IP Library › Granted Patent US 11,760,169
Granted Patent B2
US 11,760,169 · App. 17/218,526 · Granted Sep 19, 2023

Particulate control systems and methods for olfaction sensors

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.
B60H3/0085B60H1/008B60H3/0071B60H3/06B60H2001/00114B60H2003/0683B60Y2400/30
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,760,169
App. No.
17/218,526
Filed
Mar 31, 2021
Granted
Sep 19, 2023
Kind
B2
Art Unit
3762
USPC
454/75
Abstract

A vehicle system includes: an olfaction sensor comprising: a blower configured to draw air through an inlet; a filter configured to filter particulate from the air; and a volatile organic compounds (VOC) sensor disposed downstream of the filter and configured to measure an amount of VOCs in air after the air flows through the filter; and a control module configured to selectively take one or more remedial actions based on the amount of VOCs.

Claims (48)

1. A vehicle system, comprising:

an olfaction sensor comprising:

a blower configured to draw air through an inlet;

a filter configured to filter particulate from the air;

a volatile organic compounds (VOC) sensor disposed downstream of the filter and configured to measure an amount of VOCs in air after the air flows through the filter;

a first chamber;

a second chamber having an opening,

wherein the VOC sensor is disposed within the second chamber; and

the filter covers the opening;

a dispenser configured to dispense a clean portion of the filter to in front of the opening and to move a dirty portion of the filter into the first chamber; and

a particulate sensor disposed within the first chamber and configured to measure an amount of particulate within the first chamber; and

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

2. The vehicle system of claim 1 further comprising a heating element configured to heat a portion of the filter within the first chamber.

3. The vehicle system of claim 1 wherein the filter includes a roll of filter material and the dispenser is configured to rotate the roll of filter material.

4. The vehicle system of claim 1 further comprising collector plates configured to draw particulate toward the collector plates when power is applied to the collector plates.

5. The vehicle system of claim 4 wherein the collector plates are disposed downstream of the filter.

6. The vehicle system of claim 4 further comprising an ionizer configured to electrically charge the particulate in the air.

7. The vehicle system of claim 6 wherein the ionizer is disposed between (a) the filter and (b) the collector plates.

8. The vehicle system of claim 4 wherein the control module is configured to apply a first reference potential to a first one of the collector plates and a second reference potential that is different than the first reference potential to a second one of the collector plates.

9. The vehicle system of claim 8 wherein the first reference potential is positive and the second reference potential is negative.

10. An olfaction sensor of a vehicle, comprising:

an inlet;

a blower configured to draw air through the inlet;

a filter configured to capture particulate from the air;

a heating element configured to heat a portion of the filter after the portion of the filter has captured particulate from the air, the heating of the portion of the filter producing heated gas;

a VOC sensor configured to measure an amount of VOCs in the heated gas;

a first chamber;

a second chamber having an opening,

wherein the VOC sensor is disposed within the second chamber, and

wherein the filter covers the opening; and

a particulate sensor disposed within the first chamber and configured to measure an amount of particulate within the first chamber.

11. The olfaction sensor of claim 10 further comprising at least one collector plate configured to draw particulate toward the at least one collector plate when power is applied to the at least one collector plate.

12. The olfaction sensor of claim 11 wherein the at least one collector plate is disposed to draw the particulate toward the filter.

13. An olfaction sensor of a vehicle, comprising:

an inlet;

a blower configured to draw air through the inlet;

a filter configured to filter particulate from the air;

collector plates configured to draw particulate toward the filter and toward the collector plates when power is applied to the collector plates; and

a VOC sensor disposed downstream of the collector plates and configured to measure an amount of VOCs in air;

a first chamber;

a second chamber having an opening,

wherein the VOC sensor is disposed within the second chamber, and

wherein the filter covers the opening; and

a particulate sensor disposed within the first chamber and configured to measure an amount of particulate within the first chamber.

14. A system comprising:

the olfaction sensor of claim 13 ; and

a control module configured to apply a first reference potential to a first one of the collector plates and a second reference potential that is different than the first reference potential to a second one of the collector plates.

15. The system of claim 14 wherein the first reference potential is positive and the second reference potential is negative.

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 63067926 · Aug 20, 2020
Related Publication 20220055456A1 · Feb 24, 2022
Cited By (2)
US 12,371,032 US 12,576,860