DocumentCode
3264528
Title
Control strategy & calibration of fuel injection impulse width on EFI motorcycle engine
Author
Meichun, Peng ; Xubing, Deng ; Xiaofeng, Liang
Author_Institution
Electro-Mech. Eng. Fac., Guangdong Univ. of Technol., Guangzhou, China
fYear
2011
fDate
15-17 April 2011
Firstpage
2047
Lastpage
2053
Abstract
This paper studied the control strategy for fuel injection impulse width based on an electronic fuel injection (EFI) motorcycle engine 156FMI. The basic fuel injection impulse width and correcting factors were calibrated by experiments. And it was gained the basic fuel injection impulse width MAP and series of correcting factors, including post start correction factor, warm-up correction factor, injection pressure correction factor, A/F closed-loop control correction factor, transient condition correction and battery voltage correction. The results show that the performance of power, fuel consumption and exhaust emission of electronic control engine developed are better than that of original carburetor engine, and the exhaust pollutant emissions of EFI motorcycle meet the requirements of Chinese Phase IΠ emission standard.
Keywords
air pollution; battery powered vehicles; calibration; carburettors; closed loop systems; engines; exhaust systems; motorcycles; power consumption; 156FMI; A/F closed-loop control correction factor; Chinese phase III emission standard; battery voltage correction; electronic fuel injection motorcycle engine; exhaust pollutant emissions; fuel consumption; fuel injection impulse width calibration; fuel injection impulse width control strategy; injection pressure correction factor; original carburetor engine; post start correction factor; power consumption; transient condition correction; warm-up correction factor; Batteries; Calibration; Engines; Fuels; Motorcycles; Temperature; Transient analysis; Fuel injection impulse width; calibration; control strategy; electronic fuel injection (EFI); engine; motorcycle;
fLanguage
English
Publisher
ieee
Conference_Titel
Electric Information and Control Engineering (ICEICE), 2011 International Conference on
Conference_Location
Wuhan
Print_ISBN
978-1-4244-8036-4
Type
conf
DOI
10.1109/ICEICE.2011.5776821
Filename
5776821
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