Control method for internal combustion engine

Internal-combustion engines – Spark ignition timing control – Electronic control

Reexamination Certificate

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Details

C123S0780AA, C123S478000

Reexamination Certificate

active

06779510

ABSTRACT:

BACKGROUND OF INVENTION
The field of the present invention relates to control of an internal combustion engine having a variable compression ratio, and in particular to fuel injection control.
Variable compression ratio (VCR) engines are equipped with various mechanisms to adjust the volumetric ratio between piston top dead center and piston bottom dead center. Such a VCR engine changes the compression depending on various operating conditions to provide improved performance.
However, the inventor herein has recognized disadvantages of such VCR engines. For example, during engine starting conditions, higher emissions and/or degraded combustion can be experienced depending on the compression ratio during the engine start. For example, if the actual compression ratio is unknown, less than optimal fuel injection amounts and ignition timing may be provided thereby degrading performance. Similarly, if the same fuel injection amounts and ignition timing are utilized for engine starts, regardless of the actual compression ratio, degraded operation may result.
SUMMARY OF INVENTION
Disadvantages of prior approaches are overcome by a method for operating an internal combustion engine, the engine having a variable compression ratio, the method comprising: determining a fuel injection amount based on a parameter indicative of a compression ratio of the variable compression ratio engine; and injecting fuel into the engine based on said fuel injection amount.
By taking into account variation in engine compression ratio, more accurate air-fuel ratio can be obtained. This can be especially true during transients of compression ratio. Such improved air-fuel ratio control can decrease emissions.
Note that there are various ways to calculate fuel injection amount based on compression ratio. For example, it can be done by adjusting engine breathing maps, or adjusting engine-operating parameters. Further, it can be done using manifold pressure sensor based fueling systems or mass airflow sensor based fueling systems. Various other embodiments are described later herein.
Also, note that there are various ways to inject fuel into the engine based on a fuel injection amount. For example, adjusting a fueling command signal, or changing a number of times fuel is injected, or changing fuel vapor introduced via an evaporative emissions system can affect injected fuel. Any such method can be used according to the present invention. Various other embodiments are described later herein.
Finally, note that there are various other features of the invention that can be performed in various ways. For example, any type of variable compression ratio can be used, such as one where connected rod length changes or where piston height changes.


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