DocumentCode
1862462
Title
Predicting combustion pressure of automobile engine employing chaos theory
Author
Iokibe, Tadashi ; Fujimoto, Yasunari
Author_Institution
Comput. Syst. Bus. Unit, Meidensha Corp., Tokyo, Japan
fYear
2001
fDate
2001
Firstpage
511
Lastpage
516
Abstract
Automobile manufacturers continue to put a large effort into developing low emission and fuel-efficient vehicles. One of the most important researches is to develop an engine that can work in the ideal combustion condition using fuel as little as possible. The air fuel ratio is reduced in order to realize high mileage. However, the exhaust gas condition may deteriorate or the engine stops, since the combustion condition becomes unstable. Therefore, high-precision predictive control of ignition timing and air fuel ratio are important in order to retain the engine performance. The preparation of the combustion model of the engine is indispensable for predictive control. But, because the combustion is nonlinear and complex, a practical combustion model is not yet developed. Chaos has been noticed as a theory that can treat nonlinear dynamical systems, and the research has energetically been advanced. For predicting the combustion condition of the automobile engine, we applied chaos theory. That is: the peak pressure of succeeding combustion is forecast, using only the combustion pressure time series of cylinders inside. In the paper, the purpose and results of research are reported.
Keywords
chaos; combustion; internal combustion engines; nonlinear dynamical systems; predictive control; time series; automobile engine; chaos theory; combustion pressure prediction; low emission fuel-efficient vehicle; nonlinear dynamical system; peak pressure; predictive control; system diagnosis; time series analysis; Automobile manufacture; Chaos; Combustion; Engines; Fuels; Ignition; Predictive control; Predictive models; Timing; Vehicles;
fLanguage
English
Publisher
ieee
Conference_Titel
Computational Intelligence in Robotics and Automation, 2001. Proceedings 2001 IEEE International Symposium on
Print_ISBN
0-7803-7203-4
Type
conf
DOI
10.1109/CIRA.2001.1013254
Filename
1013254
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