The present invention relates to a method for checking a pressure sensor of a fuel injector system, particularly of a motor vehicle, the fuel injector system having a pressure reservoir to which the pressure sensor and an injector are assigned; in the method, a fuel quantity being injected under a pressure by the injector. In addition, the present invention relates to a device for checking a pressure sensor of a fuel injector system, particularly of a motor vehicle, the fuel injector system having a pressure reservoir to which the pressure sensor and an injector are assigned; a fuel quantity being able to be injected under a pressure by the injector.
Current legislation requires the monitoring of components of the injection system. This also includes the pressure sensor. The latter has to be monitored with respect to its signal.
One possible way in which such a pressure sensor has to be monitored has been described in the related art. German Patent No. DE 10 2004 028 891 describes a method for operating an internal combustion engine, particularly of a motor vehicle, in which the pressure sensor measures the pressure acting on the fuel to be injected, and inaccuracies and deviations of the measured pressure from the actual pressure are ascertained and corrected. In this instance, the fuel is injected under an actual pressure by an injector, and the pressure is measured by the pressure sensor. A differential signal is ascertained which represents the deviation of the pressure measured by the pressure sensor from the actual pressure. Based on the differential signal, a correction may be undertaken of the signal measured by the pressure sensor.
The present invention is based on the object of improving the detection of inaccuracies and malfunctions of the pressure sensor. No other components, particularly no additional pressure sensor, are to be used for verifying the pressure measured by the pressure sensor, in this context.
In order to attain this object, starting from a method of the type named at the outset, it is provided that the pressure difference that is created by a sudden pressure drop due to the injection process be ascertained as a function of the pressure and the fuel quantity. It has been recognized, according to the present invention, that the actual pressure curve is able to be observed and monitored, based on the known injected fuel quantity and the known steady-state adjusted pressure.
According to one advantageous specific embodiment of the present invention, it is provided that the pressure difference is compared to a pressure difference recorded by measuring the pressure, particularly by a specific sensing of the pressure, and that the pressure sensor is assessed as a function of this. Consequently, a comparison of the two pressure differences is sufficient for ascertaining a correct or an erroneous functioning, only a single pressure sensor having to be used to measure the pressure.
As a further attainment of the object of the present invention, the device according to the present invention has means for ascertaining a pressure difference, that is created by a sudden pressure drop, caused by the injection process, as a function of the pressure and the fuel quantity. Thus, the sudden pressure drop is able to be ascertained using only two factors, the steady-state adjusted pressure and the injected fuel quantity.
According to one advantageous specific embodiment of the present invention, it is provided that the device have means for comparing the pressure difference to a pressure difference recorded by measuring the pressure, particularly by a specific sensing of the pressure, and have means for assessing the pressure sensor in dependence upon the comparison. According to one preferred specific embodiment of the present invention, it is provided that the means include an electric control device. The means preferably include a computer program which is executable on a computer, particularly on a processor. A computer program is able to be changed and replaced in a simple manner.
a shows the characteristics curve of an injection process.
b shows the rail pressure curve, particularly during the injection process.
A fuel delivery system 1 of an internal combustion engine is shown in a simplified manner in
During the injection of fuel into the combustion chamber via injectors 11, a fuel removal from fuel accumulator 9 takes place, which results in the reduction of the pressure in fuel accumulator 9.
In order to be able to influence the fuel quantity that is to be injected, it is necessary to regulate and/or control the pressure in fuel accumulator 9. In order to do this, the pressure in fuel accumulator 9 is measured using a pressure sensor S, so as to control pressure regulating valve 15 appropriately by control device D, according to the measured data.
This presupposes correct functioning of pressure sensor S. Inaccuracies, ageing processes or malfunctions of pressure sensor S may lead to the fuel quantity injected by injector 11 not being correct, or no fuel being injected at all. Deviations of the actual pressure from the measured pressure must therefore be ascertained and corrected.
A characteristics curve 25 shown in
The present invention thus makes it possible to observe and monitor the pressure curve, based on a known steady-state adjusted injection pressure and a known injection quantity, whereupon, in particular, no additional pressure sensor is required and no additional functional variables are required for checking in conformance with legal requirements.
Number | Date | Country | Kind |
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102008043592.9 | Nov 2008 | DE | national |