DocumentCode
1488276
Title
Combustion Torque Estimation and Misfire Detection for Calibration of Combustion Engines by Parametric Kalman Filtering
Author
Helm, Siegfried ; Kozek, Martin ; Jakubek, Stefan
Author_Institution
Inst. of Mech. & Mechatron., Vienna Univ. of Technol., Vienna, Austria
Volume
59
Issue
11
fYear
2012
Firstpage
4326
Lastpage
4337
Abstract
In this paper, a new estimation method for the inner combustion torque of internal combustion engines and a misfire detection algorithm are presented. The torque estimate is based on a parametric Kalman filter using the measurements available on commercial engine testbeds. The combustion torque is modeled as a superposition of specially designed basis functions. Excellent noise attenuation, phase-free estimation, and robust parametrization result from the chosen structure. Misfire detection is achieved by an interacting multiple model approach, where two dedicated Kalman filters for each cylinder represent regular operation and misfire, respectively. This approach enables reliable detection of the actual cylinder state early in the combustion phase. The functionality and performance of the new method are illustrated by means of simulation examples and test-bed results.
Keywords
Kalman filters; calibration; combustion; engine cylinders; internal combustion engines; mechanical engineering computing; torque; engine cylinders; engine testbeds; inner combustion torque estimation; internal combustion engines calibration; misfire detection algorithm; noise attenuation; parametric Kalman filtering; phase free estimation; robust parametrization; superposition; Combustion; Covariance matrix; Engines; Estimation; Kalman filters; Torque control; Combustion engine; Kalman filter; misfire detection; testbed; torque estimation;
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2012.2193855
Filename
6179529
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