DocumentCode :
3576077
Title :
Model-based calibration for torque control system of gasoline engines
Author :
Hu Desheng ; Hu Yunfeng ; Chen Hong
Author_Institution :
Dept. of Control Sci. & Eng., Jilin Univ., Changchun, China
fYear :
2014
Firstpage :
1774
Lastpage :
1779
Abstract :
The optimized calibration technology is considered as one of the most important issues in modern engine control. In this paper, to reduce the workload of calibration and development costs, the Model-based Calibration (MBC) technology is applied to develop the torque control system of gasoline engines, which consists of the desired map calibration and tracking control. The desired calibration map contains spark advance angle map, air-fuel ratio (AFR) map, torque explanation map. Then, through the tracking controls of spark advance angle, AFR and electronic throttle, the desired torque demand is achieved. In the calibration process, the high fidelity engine model enDYDA is utilized as a virtual engine bench to obtain experimental data. Finally, the offline simulation results and Hardware in Loop (HiL) experiments are presented to validate the effectiveness of the designed torque control system. And they also show that the MBC method is timesaving and reliable. The major contribution of this paper lies in that we successfully apply MBC methodology to the air path control system of gasoline engines.
Keywords :
calibration; internal combustion engines; torque control; tracking; AFR map; HiL experiment; MBC methodology; MBC technology; air path control system; air-fuel ratio map; calibration workload; desired calibration map; desired torque demand; development cost; electronic throttle; enDYDA; engine control; gasoline engine; hardware in loop experiment; high fidelity engine model; map calibration; model-based calibration; offline simulation; optimized calibration technology; spark advance angle map; torque control system; torque explanation map; tracking control; virtual engine bench; Atmospheric modeling; Calibration; Engines; Mathematical model; Sparks; Torque; Torque control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mechatronics and Control (ICMC), 2014 International Conference on
Print_ISBN :
978-1-4799-2537-7
Type :
conf
DOI :
10.1109/ICMC.2014.7231866
Filename :
7231866
Link To Document :
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