Method for monitoring an exhaust system of an internal combustion engine
A method and an arrangement for monitoring an exhaust system of an internal combustion engine. Temperature profiles upstream and downstream of an installation location of a catalytic converter are measured in order to determine whether or not a catalytic converter is installed.
1. A method for monitoring an exhaust system of an internal combustion engine, which exhaust system is provided for discharging, in a flow direction, exhaust gases that are generated by the internal combustion engine, wherein, in the exhaust system, there is provided an installation location suitable for the installation of a catalytic converter, the method comprising the steps of:
measuring a first temperature profile upstream of the installation location as viewed in a flow direction of the exhaust gas;
measuring a second temperature profile downstream of the installation location as viewed in the flow direction;
determining an expected temperature profile downstream of the installation location based on the measured first temperature profile upstream of the installation location; and
comparing the determined expected temperature profile downstream of the installation location with the measured second temperature profile downstream of the installation location to determine whether the catalytic converter is installed at the installation location, wherein the expected temperature profile and the measured second temperature profile are plotted and an area between the plots of the two profiles is evaluated.
2. The method as claimed in claim 1 , wherein the method is carried out during a temperature step change.
3. The method as claimed in claim 1 , wherein the expected temperature profile downstream of the installation location is determined using a simulation.
4. The method as claimed in claim 1 , wherein the exhaust system has an SCR catalytic converter.
5. The method as claimed in claim 1 , further including recording a fault in a memory when there is a predefinable deviation between the determined expected temperature profile downstream of the installation location and the measured second temperature profile downstream of the installation location.
6. The method as claimed in claim 5 , further including reading out contents of the memory at predefinable time intervals.
7. The method as claimed in claim 5 , further including reading out contents of the memory out when a first temperature profile upstream of the installation location is constant.
8. An arrangement for monitoring an exhaust system of an internal combustion engine, which exhaust system is provided for discharging, in a flow direction, exhaust gases that are generated by the internal combustion engine, wherein, in the exhaust system, there is an installation location suitable for installation of a catalytic converter, wherein the arrangement comprises:
a first temperature sensor for measuring a first temperature profile upstream of the installation location as viewed in a flow direction; and
a second temperature sensor for measuring a temperature profile downstream of the installation location as viewed in the flow direction, wherein the arrangement determines an expected temperature profile downstream of the installation location based on the measured first temperature profile upstream of the installation location and compares the determined expected temperature profile downstream of the installation location with the measured second temperature profile in order to determine whether the catalytic converter is installed at the installation location, wherein the expected temperature profile and to the measured second temperature profile are plotted and an area between the plots of the two profiles is evaluated.
9. The arrangement as claimed in claim 8 , further comprising a memory for recording a fault when there is a predefinable deviation between the determined expected temperature profile downstream of the installation location and the measured second temperature profile downstream of the installation location.