IP Library › Granted Patent US 10,234,420
Granted Patent B2
US 10,234,420 · App. 14/917,326 · Granted Mar 19, 2019

Gas sensor control device

Inventors: Ryozo Kayama (Kariya, JP); Yukihiro Yamashita (Kariya, JP); Yoshihiro Sakashita (Kariya, JP)
Assignee: DENSO CORPORATION
G01N27/419F01N11/007G01N27/409G01N27/41G01N27/4175Y02T10/47
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 10,234,420
App. No.
14/917,326
Granted
Mar 19, 2019
Kind
B2
Abstract

A NOx sensor includes a pump cell, a monitor cell, and a sensor cell, and the pump cell discharges an oxygen in an exhaust gas introduced into a chamber. The sensor cell outputs a detected signal depending on a concentration of a NOx according to a gas after the oxygen is discharged. A microcomputer of a sensor control circuit temporarily changes an amount of the oxygen discharged by the pump cell, and then calculates output change amounts ΔIp, ΔIs, and ΔIm of the cells. The microcomputer performs a correction of the concentration of the NOx detected by the sensor cell and a deterioration diagnosis of the sensor cell, based on the output change amounts ΔIp, ΔIs, and ΔIm of the cells. When the sensor cell current Is is smaller than the monitor cell current Im, the microcomputer determines that the NOx sensor has an abnormality.

Claims (44)

1. A gas sensor control device for a gas sensor including a first cell and a second cell each having a solid electrolytic element and a pair of electrodes disposed on the solid electrolytic element, the gas sensor discharging an oxygen in a detected gas introduced into a gas chamber, by using the first cell, and the gas sensor detecting a concentration of a specific component from a gas after the oxygen is discharged, by using the second cell, the gas sensor control device comprising:

a CPU and a storage memory storing instructions which upon execution by the CPU provides a configuration to at least perform:

an oxygen discharge amount change which includes sending an instruction to change a voltage of the first cell to thereby temporarily change an oxygen discharge amount that is an amount of the oxygen that is discharged, by the first cell;

a first calculation which calculates an actual discharge amount that is an actual amount of a change of the oxygen discharged when the oxygen discharge amount is changed by the oxygen discharge amount change;

a second calculation which calculates an amount of output change which occurs in the second cell as a result of changing the oxygen discharge amount by the oxygen discharge amount change; and

a control which performs deterioration diagnosis of the second cell, based on the actual discharge amount as calculated by the first calculation and the amount of output change of the second cell as calculated by the second calculation,

wherein the control includes a deterioration diagnosis which calculates an output sensitivity value of the second cell based on the actual discharge amount and the amount of the output change of the second cell and performing a deterioration diagnosis of the second cell.

2. The gas sensor control device according to claim 1 , wherein:

the oxygen discharge amount change temporarily decreases the amount of oxygen discharge by the first cell;

the first calculation calculates an amount of a decrease of an actual oxygen discharge as a result of decreasing the amount of oxygen discharge by the first cell, as the actual discharge amount;

the second calculation calculates an increase amount of output change of the second cell as a result of decreasing the amount of oxygen discharge by the first cell; and

the control performs at least either correction of the concentration of the specific component as detected by the second cell or the deterioration diagnosis, based on the amount of the decrease of the actual oxygen discharge as calculated by the first calculation and the amount of output increase in the second cell as calculated by the second calculation.

3. The gas sensor control device according to claim 2 , wherein execution of the instructions by the CPU further provides the configuration to at least perform:

a diagnosis which determines that the concentration of the specific component of the detected gas is below a prescribed value,

wherein the oxygen discharge amount change temporarily decreases the amount of oxygen discharge by the first cell when the diagnosis determines that the concentration of the specific component is below the prescribed value.

4. The gas sensor control device according to claim 3 , wherein:

the gas sensor is an exhaust gas sensor which takes exhaust gas discharged from an internal combustion engine as an object of detection and detects a concentration of a specific component in the exhaust gas,

the diagnosis determines that the concentration of the specific component is below a prescribed value when fuel cut is being performed in the internal combustion engine, and

the oxygen discharge amount change temporarily decreases the amount of oxygen discharge by the first cell when fuel cut is being performed in the internal combustion engine.

5. The gas sensor control device according to claim 4 , wherein:

the gas sensor is a NOx sensor which detects a concentration of NOx in the exhaust gas, and

the oxygen discharge amount change discharges oxygen equivalent to 2000 to 3000 ppm as the NOx concentration, using the first cell.

6. The gas sensor control device according to claim 1 , wherein execution of the instructions by the CPU further provides the configuration to at least perform:

a setting which, when the oxygen discharge amount is changed by the oxygen discharge amount change, varies the oxygen discharge amount depending on the concentration of the specific component before change of the oxygen discharge amount.

7. The gas sensor control device according to claim 1 , wherein the second cell is a sensor cell which detects a concentration of a component other than oxygen as the concentration of the specific component from gas after oxygen discharge by the first cell.

8. The gas sensor control device according to claim 1 , wherein the second cell is a monitor cell which detects a concentration of residual oxygen in the gas chamber as the concentration of the specific component, from gas after oxygen discharge by the first cell.

9. The gas sensor control device according to claim 1 , wherein the control includes a concentration correction which calculates an output correction value of the second cell based on the actual discharge amount and the amount of the output change of the second cell and performing a correction of the concentration of the specific component as detected by the second cell.

10. A gas sensor control device for a gas sensor including a first cell and a second cell each having a solid electrolytic element and a pair of electrodes disposed on the solid electrolytic element, the gas sensor discharging an oxygen in a detected gas introduced into a gas chamber, by using the first cell, and the gas sensor detecting a concentration of a specific component from a gas after the oxygen is discharged, by using the second cell, the gas sensor control device comprising:

a CPU and a storage memory storing instructions which upon execution by the CPU provides a configuration to at least perform:

an oxygen discharge amount change which includes sending an instruction to change a voltage of the first cell to thereby temporarily change an oxygen discharge amount that is an amount of the oxygen that is discharged, by the first cell;

a first calculation which calculates an actual discharge amount that is an actual amount of a change of the oxygen discharged when the oxygen discharge amount is changed by the oxygen discharge amount change;

a second calculation which calculates an amount of output change which occurs in the second cell as a result of changing the oxygen discharge amount by the oxygen discharge amount change; and

a control which performs at least either correction of the concentration of the specific component as detected by the second cell or deterioration diagnosis of the second cell, based on the actual discharge amount as calculated by the first calculation and the amount of output change of the second cell as calculated by the second calculation; wherein:

the oxygen discharge amount change temporarily decreases the amount of oxygen discharge by the first cell;

the first calculation calculates an amount of a decrease of an actual oxygen discharge as a result of decreasing the amount of oxygen discharge by the first cell, as the actual discharge amount;

the second calculation calculates an increase amount of output change of the second cell as a result of decreasing the amount of oxygen discharge by the first cell; and

the control performs at least either the correction of the concentration or the deterioration diagnosis, based on the amount of the decrease of the actual oxygen discharge as calculated by the first calculation and the amount of output increase in the second cell as calculated by the second calculation.

11. A gas sensor control device for a gas sensor including a first cell and a second cell each having a solid electrolytic element and a pair of electrodes disposed on the solid electrolytic element, the gas sensor discharging an oxygen in a detected gas introduced into a gas chamber, by using the first cell, and the gas sensor detecting a concentration of a specific component from a gas after the oxygen is discharged, by using the second cell, the gas sensor control device comprising:

a CPU and a storage memory storing instructions which upon execution by the CPU provides a configuration to at least perform:

an oxygen discharge amount change which includes sending an instruction to change a voltage of the first cell to thereby temporarily change an oxygen discharge amount that is an amount of the oxygen that is discharged, by the first cell;

a first calculation which calculates an actual discharge amount that is an actual amount of a change of the oxygen discharged when the oxygen discharge amount is changed by the oxygen discharge amount change;

a second calculation which calculates an amount of output change which occurs in the second cell as a result of changing the oxygen discharge amount by the oxygen discharge amount change;

a control which performs at least either correction of the concentration of the specific component as detected by the second cell or deterioration diagnosis of the second cell, based on the actual discharge amount as calculated by the first calculation and the amount of output change of the second cell as calculated by the second calculation; and

a setting which, when the oxygen discharge amount is changed by the oxygen discharge amount change, varies the oxygen discharge amount depending on the concentration of the specific component before change of the oxygen discharge amount.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2016
From: KAYAMA, RYOZO; YAMASHITA, YUKIHIRO; SAKASHITA, YOSHIHIRO
To: DENSO CORPORATION
Reel/Frame 037918/0759 →
Priority Claims (2)
JP 2013-196062 · Sep 20, 2013 · national
JP 2013-246947 · Nov 29, 2013 · national
Continuity (1)
Related Publication 20160223488A1 · Aug 4, 2016
Cited By (3)
US 12,251,991 US 12,269,315 US 12,377,711