IP Library Patent Application 10589231
Patent Application
App. No. 10/589,231

Device for Determining the State of a Soot Particle Filter

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Quick Facts
Patent No.
US None
App. No.
10/589,231
Abstract

A device determined the state of a soot particle filter of an internal combustion engine. An electrical measuring arrangement is embodied as a soot sensor for measuring a soot deposit and comprises an electrical component with a conductor structure for exciting an electrical or magnetic field which can be influenced by the soot deposit and characterizes an electrical or magnetic characteristic variable of the component. A measuring arrangement measures the electrical or magnetic characteristic variable of the component as a measure of the soot deposit. The conductor structure is arranged so that a partial volume region of the soot particle filter is penetrated by the electrical field, and the partial volume region forms part of the component.

Claims (29)

1 - 28 . (canceled)

29 . A device for determining the state of a soot particle filter of an internal combustion engine, comprising an electrical measuring arrangement configured as a soot sensor for measuring a soot deposit of the soot particle filter, including an electrical component with a conductor structure for exciting an electrical or magnetic field influenceable by the soot deposit and characterizes an electrical or magnetic characteristic variable of the component as a measure of a quantity of the soot deposit, wherein the conductor structure is arranged such that a partial volume region of the soot particle filter is penetrated by the electrical field and the partial volume region forms part of the component, and the electrical component is a coil or a capacitor.

30 . The device as claimed in claim 29 , wherein the soot deposit is measurable in partial volume regions of the soot particle filter that are different from one another.

31 . The device as claimed in claim 29 , wherein the measuring means measures a characteristic variable of the component which is linked to the electrical impedance.

32 . The device as claimed in claim 31 , wherein at least one of the absolute value and phase of the electrical impedance is measurable.

33 . The device as claimed in claim 31 , wherein at least one of the ohmic resistance, the capacitance and the inductance of the component is measurable.

34 . The device as claimed in claim 32 , wherein at least one of the ohmic resistance, the capacitance and the inductance of the component is measurable.

35 . The device as claimed in claim 29 , wherein switching means are provided for automatically initiating regeneration of the filter when a predefinable triggering measured value is reached.

36 . The device as claimed in claim 29 , wherein switching means are provided for automatically ending the regeneration of the filter when a predefinable limiting measured value is reached.

37 . The device as claimed in claim 29 , wherein means are provided for at least one of measuring the temperature of the filter and performing temperature compensation on the measurement signal.

38 . The device as claimed in claim 29 , wherein a coil-shaped conductor structure is arranged at least partially in the interior of the soot particle filter.

39 . The device as claimed in claim 29 , wherein a coil-shaped conductor structure is arranged outside the soot particle filter.

40 . The device as claimed in claim 38 , wherein the soot particle filter is of cylindrical configuration, and a coil longitudinal axis of the coil-shaped conductor structure is oriented one of approximately parallel and approximately perpendicular to a longitudinal axis of the soot particle filter.

41 . The device as claimed in claim 39 , wherein the soot particle filter is of cylindrical configuration, and a coil longitudinal axis of the coil-shaped conductor structure is oriented one of approximately parallel and approximately perpendicular to a longitudinal axis of the soot particle filter.

42 . The device as claimed in claim 38 , wherein the measuring arrangement further comprises a second conductor structure, the coil-shaped conductor structure being operatively connected to the second conductor structure which has an electrical characteristic variable influenceable by the soot deposit and measurable by the measuring means.

43 . The device as claimed in claim 42 , wherein the measuring arrangement further comprises a second conductor structure, the coil-shaped conductor structure being operatively connected to the second conductor structure which has an electrical characteristic variable influenceable by the soot deposit and measurable by the measuring means.

44 . The device as claimed in claim 42 , wherein the second conductor structure is a second coil-shaped conductor structure, and a variable which correlates to the mutual inductance which is effective between the coil-shaped conductor structures is measurable by the measuring means.

45 . The device as claimed in claim 43 , wherein the second conductor structure is a second coil-shaped conductor structure, and a variable which correlates to the mutual inductance which is effective between the coil-shaped conductor structures is measurable by the measuring means.

46 . The device as claimed in claim 42 , wherein the coil-shaped conductor structure is arranged in an exhaust gas flow direction with an offset with respect to the second conductor structure.

47 . The device as claimed in claim 43 , wherein the coil-shaped conductor structure is arranged in an exhaust gas flow direction with an offset with respect to the second conductor structure.

48 . The device as claimed in claim 44 , wherein the coil-shaped conductor structure is arranged in an exhaust gas flow direction with an offset with respect to the second conductor structure.

49 . The device as claimed in claim 44 , wherein the coil-shaped conductor structure is arranged in an exhaust gas flow direction with an offset with respect to the second conductor structure.

50 . The device as claimed in claim 29 , wherein the conductor structure comprises a pair of electrodes with a first electrode and a second electrode spaced from the first electrode, the partial volume region being arranged between the first electrode and the second electrode.

51 . The device as claimed in claim 50 , wherein at least the first electrode and the second electrode is arranged on or a short distance from an outer surface of the soot particle filter.

52 . The device as claimed in claim 50 , wherein the measuring arrangement further comprises at least two pairs of electrodes.

53 . The device as claimed in claim 51 , wherein the measuring arrangement further comprises at least two pairs of electrodes.

54 . The device as claimed in claim 52 , wherein the first pair of electrodes is arranged in the exhaust gas flow offset from the second pair of electrodes.

55 . The device as claimed in claim 53 , wherein the first pair of electrodes is arranged in the exhaust gas flow offset from the second pair of electrodes.

56 . The device as claimed in claim 29 , further comprising a second electrical measuring arrangement operative as a soot sensor for measuring a soot deposit is arranged downstream of the soot particle filter with respect to a flow direction through the soot particle filter.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION NO. 10/567,810 PREVIOUSLY RECORDED ON REEL 020976 FRAME 0889. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF NAME. Recorded Jul 1, 2020
From: DAIMLERCHRYSLER AG
To: DAIMLER AG
Reel/Frame 053583/0493 →
CHANGE OF NAME Recorded May 14, 2008
From: DAIMLERCHRYSLER AG
To: DAIMLER AG
Reel/Frame 020976/0889 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2008
From: BIRKHOFER, THOMAS; KNEZEVIC, ALEKSANDAR; MUELLER, RALF; PLOG, CARSTEN
To: DAIMLERCHRYSLER AG
Reel/Frame 020464/0356 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 17, 2007
From: BIRKHOFER, THOMAS; KNEZEVIC, ALEKSANDAR; MUELLER, RALF; PLOG, CARSTEN
To: DAIMLERCHRYSLER AG
Reel/Frame 019205/0658 →