Method of controlling lambda sensor preheating and lambda sensor drive controller
US-2015377827-A1 · Dec 31, 2015 · US
US9933389B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9933389-B2 |
| Application number | US-201514965328-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 10, 2015 |
| Priority date | Dec 12, 2014 |
| Publication date | Apr 3, 2018 |
| Grant date | Apr 3, 2018 |
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A sensor control apparatus of a gas detection system includes a digital computation section having a PID computation section, a first filter section, and a second filter section as functional sections. The first filter section digitally extracts a DAC control signal (first filter signal) from a digital signal representing a supply control current Tip computed by the PID computation section. The DAC control signal is a digital signal which represents the supply control current Tip for pump current and in which noise components superimposed as a result of digital computation in the PID computation section have been attenuated.
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What is claimed is: 1. A sensor control apparatus for controlling a gas sensor including a detection cell which produces an electromotive force corresponding to a particular component contained in an object gas and an oxygen pump cell which performs pumping in or pumping out of oxygen in accordance with a pump current supplied to the oxygen pump cell, the sensor control apparatus comprising: an analog-to-digital conversion section configured to convert an analog signal representing the electromotive force of the detection cell to a digital value of the electromotive force; a supply control value computation section configured to digitally compute a supply control value for the pump current supplied to the oxygen pump cell on the basis of the digital value of the electromotive force; a first filter section configured to digitally extract a first filter signal from a digital signal representing the supply control value for the pump current such that components of the digital signal whose frequencies are higher than a predetermined first cut-off frequency are attenuated; a second filter section configured to digitally extract a second filter signal from the first filter signal such that components of the first filter signal whose frequencies are higher than a predetermined second cut-off frequency are attenuated; and a digital-to-analog conversion section configured to generate the pump current supplied to the oxygen pump cell on the basis of the first filter signal; wherein the second filter section outputs to an external apparatus the second filter signal as a pump current signal for detection of the particular component contained in the object gas. 2. The sensor control apparatus according to claim 1 , wherein the first cut-off frequency is higher than the second cut-off frequency. 3. A gas detection system comprising: a gas sensor including a detection cell which produces an electromotive force corresponding to a particular component contained in an object gas and an oxygen pump cell which performs pumping in or pumping out of oxygen in accordance with a pump current supplied to the oxygen pump cell; and a sensor control apparatus for controlling the gas sensor, the sensor control apparatus including an analog-to-digital conversion section configured to convert an analog signal representing the electromotive force of the detection cell to a digital value of the electromotive force, a supply control value computation section configured to digitally compute a supply control value for the pump current supplied to the oxygen pump cell on the basis of the digital value of the electromotive force, a first filter section configured to digitally extract a first filter signal from a digital signal representing the supply control value for the pump current such that components of the digital signal whose frequencies are higher than a predetermined first cut-off frequency are attenuated, a second filter section configured to digitally extract a second filter signal from the first filter signal such that components of the first filter signal whose frequencies are higher than a predetermined second cut-off frequency are attenuated, and a digital-to-analog conversion section configured to generate the pump current supplied to the oxygen pump cell on the basis of the first filter signal; wherein the second filter section outputs to an external apparatus the second filter signal as a pump current signal for detection of the particular component contained in the object gas. 4. The sensor control apparatus of claim 3 , wherein the first cut-off frequency is higher than the second cut-off frequency.
Circuit arrangements specially adapted therefor · CPC title
Measuring voltages or currents with a combination of oxygen pumping cells and oxygen concentration cells · CPC title
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