2003Unpublished venueRequires access

Hybrid control of a gasoline direct injection engine

Maria Druzhinina, Ilya Kolmanovsky, Jing Sun

Open publisher page 11 citations

Abstract

This paper describes an automotive control problem where switching is an essential feature of the operation of a direct injection spark ignition engine. The engine operates in two distinct combustion modes with different emissions and torque characteristics: the homogeneous mode and the stratified mode. The control system must be capable of changing the combustion mode and the air-to-fuel ratio of the engine rapidly and without any noticeable torque disturbance to the driver. A hybrid control scheme is described in this paper to control the mode transitions in this engine and its operation is illustrated with simulations on a mean-value model of the engine.

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What this paper is about

This paper describes an automotive control problem where switching is an essential feature of the operation of a direct injection spark ignition engine. The engine operates in two distinct combustion modes with different emissions and torque characteristics: the homogeneous mode and the stratified mode. The control system must be capable of changing the combustion mode and the air-to-fuel ratio of the engine rapidly and without any noticeable torque disturbance to the driver. A hybrid control scheme is described in this paper to control the mode transitions in this engine and its operation is illustrated with simulations on a mean-value model of the engine.

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OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper describes an automotive control problem where switching is an essential feature of the operation of a direct injection spark ignition engine. The engine operates in two distinct combustion modes with different emissions and torque characteristics: the homogeneous mode and the stratified mode. The control system must be capable of changing the combustion mode and the air-to-fuel ratio of the engine rapidly and without any noticeable torque disturbance to the driver. A hybrid control scheme is described in this paper to control the mode transitions in this engine and its operation is illustrated with simulations on a mean-value model of the engine.

Key concepts: Petrol engine, Automotive engineering, Automotive engine, Torque, Homogeneous charge compression ignition, Engine control unit, Mode (computer interface), Gasoline direct injection

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