Method for Operating a Probe

US2018017537A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2018017537-A1
Application numberUS-201715718982-A
CountryUS
Kind codeA1
Filing dateSep 28, 2017
Priority dateApr 1, 2015
Publication dateJan 18, 2018
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A method for operating a probe having a pumped reference cell. A pulse-width-modulated pump current is applied to the reference cell at a first point in time. In accordance with the first point in time, a first voltage characteristic value (representing the voltage applied to the reference cell) is determined within a first time frame. The pulse-width-modulated pump current applied to the reference cell is switched off at a second point in time. A third point in time is determined, at which a pulse-width-modulated pump current applied to the reference cell is switched off. In accordance with the third point in time, a second voltage characteristic value (representing the voltage applied to the reference cell) is determined within a second time frame. The first and second voltage characteristic values are used to determine a diagnostic characteristic value, which is representative of an error in determining the nitrogen oxide concentration.

First claim

Opening claim text (preview).

What is claimed is: 1 . A method for performing a self-diagnosis of a nitrogen oxide probe or a lambda probe with a pumped reference cell, comprising the steps of: providing a first point in time; providing a reference cell; providing a predetermined first time window, the first point in time being the beginning of the predetermined first time window; providing a second point in time; providing a third point in time, which is after the second point in time; providing a second predetermined time window, the third point in time being the beginning of the second predetermined time window; and providing a diagnostic characteristic value that is representative of an error in the determination of the oxides of nitrogen concentration; placing the reference cell into a pumped operating state; determining the first point in time by applying a pulse width modulated pump current to the reference cell; determining at least one first voltage characteristic value that is representative of a voltage applied to the reference cell within the predetermined first time window, such that the first voltage characteristic value is determined during a switched-off time of the pulse width modulated current; turning off the pulse width modulated pump current applied to the reference cell at the second point in time; determining the third point in time after the pulse width modulated pump current applied to the reference cell is turned off and the reference cell is in an unpumped operating state; determining at least one second voltage characteristic value that is representative of the voltage applied to the reference cell within the second predetermined time window; determining the diagnostic characteristic value by determining the difference between the at least one first voltage characteristic value and the at least one second voltage characteristic value. 2 . The method of claim 1 , further comprising the steps of providing a wait phase for a predetermined first period of time which is carried out between the second point in time and the third point in time. 3 . The method of claim 1 , further comprising the steps of: providing a fourth point in time, the fourth point in time being after the third point in time; turning off the pulse width modulated pump current applied to the reference cell at the fourth point in time. 4 . The method of claim 3 , further comprising the steps of: providing a fifth point in time, the fifth point in time being after the fourth point in time; providing at least one third voltage characteristic; providing a third predetermined time window, the fifth point in time being the beginning of the predetermined third time window; turning on the reference cell; placing the reference cell into a pumped operating state; applying a pulse width modulated pump current to the reference cell at the fifth point in time; determining the at least one third voltage characteristic value that is representative of the voltage applied to the reference cell within the predetermined third time window. 5 . The method of claim 4 , further comprising the steps of providing a wait phase for a predetermined second period of time which is carried out between the fourth point in time and the fifth point in time. 6 . The method of claim 4 , further comprising the steps of determining the diagnostic characteristic value as a function of the at least one third voltage characteristic value. 7 . The method of claim 4 , further comprising the steps of determining the diagnostic characteristic value based on an average value of the respective voltage values. 8 . The method of claim 4 , further comprising the steps of determining the diagnostic characteristic value based on the determination of a standard deviation depending on the respective voltage characteristic values. 9 . The method of claim 1 , further comprising the steps of: providing the probe to further comprise a measurement cell; providing a target voltage characteristic value that is representative of a voltage applied to the measurement cell for measuring a gas concentration of a gas mixture delivered to the probe; determining the target voltage characteristic value as a function of the diagnostic characteristic value; applying current to the measurement cell; controlling the current applied to the measurement cell such that the voltage applied to the measurement cell is set to the target voltage characteristic value. 10 . The method of claim 1 , further comprising the steps of: providing the probe to be an oxygen sensor; determining an oxygen concentration of a gas mixture delivered to the oxygen sensor as a function of the diagnostic characteristic value. 11 . The method of claim 1 , further comprising the steps of: providing an internal combustion engine; provide an exhaust duct in fluid communication with the internal combustion engine; and the probe further comprising a nitrogen oxide sensor at least partially disposed in the exhaust duct; determining the first point in time based on the operating state of the internal combustion engine; determining a nitrogen oxide concentration of a gas mixture delivered to the oxides of nitrogen sensor as a function of the diagnostic characteristic value.

Assignees

Inventors

Classifications

  • the diagnostic devices measuring oxygen or air concentration downstream of the exhaust apparatus · CPC title

  • using oxygen or lambda-sensors (testing catalytic converters F01N3/18, F01N11/007) · CPC title

  • Measuring voltages or currents with a combination of oxygen pumping cells and oxygen concentration cells · CPC title

  • NOx · CPC title

  • relating to the failure of sensors or parameter detection devices · CPC title

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What does patent US2018017537A1 cover?
A method for operating a probe having a pumped reference cell. A pulse-width-modulated pump current is applied to the reference cell at a first point in time. In accordance with the first point in time, a first voltage characteristic value (representing the voltage applied to the reference cell) is determined within a first time frame. The pulse-width-modulated pump current applied to the refer…
Who is the assignee on this patent?
Continental Automotive Gmbh
What technology area does this patent fall under?
Primary CPC classification G01N33/0006. Mapped technology areas include Physics.
When was this patent published?
Publication date Thu Jan 18 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).