IP Library Granted Patent US 7,080,547
Granted Patent B2
US 7,080,547 · App. 10/840,179 · Granted Jul 25, 2006

Method and device for operating an internal combustion engine

Assignee: Robert Bosch GmbH
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Quick Facts
Patent No.
US 7,080,547
App. No.
10/840,179
Granted
Jul 25, 2006
Kind
B2
Abstract

A method and a device for operating an internal combustion engine having an intake manifold and a ventilation system may allow a reliable and fault-free diagnosis of a fault in the ventilation. The ventilation system may be a tank ventilation or a crankcase ventilation. The ventilation duct is conducted to the intake manifold of the internal combustion engine. At least one pressure differential may be determined between an intake-manifold pressure or an ambient pressure, on the one hand, and a pressure in the ventilation duct, on the other hand. A fault in the ventilation may be diagnosed as a function of the at least one pressure differential.

Claims (29)

1. A method for operating an internal combustion engine having an intake manifold and a ventilation duct of ventilation system, comprising:

determining at least one pressure differential between one of (i) an intake-manifold pressure and a pressure in the ventilation duct and (ii) an ambient pressure and the pressure in the ventilation duct; and

determining a fault in the ventilation system as a function of the at least one pressure differential;

wherein the ventilation system includes one of (i) a tank ventilation system and (ii) a crankcase ventilation system conducted to the intake manifold of the internal combustion engine.

2. The method according to claim 1 , further comprising generating a first pressure differential between the intake-manifold pressure and the pressure in the ventilation duct, wherein the determining step includes determining a fault in the ventilation system if the first pressure differential exceeds a first preselected value.

3. The method according to claim 1 , further comprising generating a maximum value from at least one of (i) the at least one pressure differential and (ii) the intake-manifold pressure.

4. The method according to claim 1 , further comprising generating a minimum value from the intake-manifold pressure.

5. A method for operating an internal combustion engine having an intake manifold and a ventilation duct of ventilation system, comprising:

determining at least one pressure differential between one of (i) an intake-manifold pressure and a pressure in the ventilation duct and (ii) an ambient pressure and the pressure in the ventilation duct;

determining a fault in the ventilation system as a function of the at least one pressure differential; and

generating a second pressure differential between the ambient pressure and the pressure in the ventilation duct, wherein the determining step includes determining a fault in the ventilation system if the second pressure differential falls below a second preselected value.

6. A method for operating an internal combustion engine having an intake manifold and a ventilation duct of ventilation system, comprising:

determining at least one pressure differential between one of (i) an intake-manifold pressure and a pressure in the ventilation duct and (ii) an ambient pressure and the pressure in the ventilation duct;

determining a fault in the ventilation system as a function of the at least one pressure differential;

generating a first pressure differential between the pressure in the ventilation duct and the intake-manifold pressure; and

generating a second pressure differential between the ambient pressure and the pressure in the ventilation duct;

wherein the determining step includes determining a fault in the ventilation system if the first pressure differential is greater than the second pressure differential.

7. A method for operating an internal combustion engine having an intake manifold and a ventilation duct of ventilation system, comprising:

determining at least one pressure differential between one of (F) an intake-manifold pressure and a pressure in the ventilation duct and (ii) an ambient pressure and the pressure in the ventilation duct; and

determining a fault in the ventilation system as a function of the at least one pressure differential;

wherein the determining step includes determining a fault only if, in addition, a difference between a maximum intake-manifold pressure and a minimum intake-manifold pressure is greater than a third preselected value.

8. A method for operating an internal combustion engine having an intake manifold and a ventilation duct of ventilation system, comprising:

determining at least one pressure differential between one of (F) an intake-manifold pressure and a pressure in the ventilation duct and (ii) an ambient pressure and the pressure in the ventilation duct;

determining a fault in the ventilation system as a function of the at least one pressure differential; and

low-pass filtering at least one of (i) the at least one pressure differential and (ii) the intake-manifold pressure.

9. A device for operating an internal combustion engine having an intake manifold and a ventilation duct of a ventilation system, comprising:

a detector configured to ascertain at least one pressure differential between one of (i) an intake-manifold pressure and a pressure in the ventilation duct and (ii) an ambient pressure and the pressure in the ventilation duct;

a diagnostic unit configured to diagnose a fault in the ventilation system as a function of the at least one pressure differential;

wherein the ventilation system includes one of (i) a tank ventilation system and (ii) a crankcase ventilation system that is conducted to the intake manifold of the internal combustion engine.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 8, 2004
From: BEYER, HANS-ERNST; KASTNER, FRANK
To: ROBERT BOSCH GMBH
Reel/Frame 015888/0833 →
Priority Claims (1)
DE 103 20 054 · May 6, 2003 · national
Continuity (1)
Related Publication 20050022795A1 · Feb 3, 2005