Title :
Exhaust After-Treatment Dosing System with SCR Technology
Author :
Zhou, Qihong ; Chen, Ge ; Mao, Limin ; Lu, Yi
Author_Institution :
Eng. Res. Center of Adv. Textile Machinery Minist. Educ., Donghua Univ., Shanghai, China
Abstract :
The paper mainly studied dosing pump unit and electronic control unit of exhaust after-treatment dosing system. It is based on SCR (selective catalytic reduction) technology. The ammonia combines with NOx to form harmless byproducts. New type metering pump based on stepper motor is adopted as AdBlue dosing equipment. The eccentric wheel drives plunger rod of pump. TMS320F28016 processor is the core chip in embedded control board developed. Suction speed is invariable and the fastest. Discharge speed could be dynamically changed as need. Requested dosing rate commands from the engine control unit are transmitted via CAN BUS, they can be responded within 2 milliseconds. Dosing rate of system can satisfy well requirement from 100 ml/h to 6000 ml/h.The precision of dosing rate can reach 1ml/h by setting PWM timer values. The dosing system developed can comply with State IV exhaust gas limits. This is an easy to control, very compact and inexpensive system. It is particularly suitable for retrofitting to trucks.
Keywords :
air pollution control; controller area networks; embedded systems; exhaust systems; field buses; fuel pumps; microprocessor chips; pulse width modulation; stepping motors; wheels; AdBlue dosing equipment; CAN bus; PWM timer value; SCR technology; TMS320F28016 processor; ammonia; core chip; discharge speed; dosing pump unit; eccentric wheel; electronic control unit; embedded control board; engine control unit; exhaust after-treatment dosing system; harmless byproduct; metering pump; selective catalytic reduction; stepper motor; suction speed; Cavity resonators; Engines; Pulse width modulation; Thyristors; Valves; Vehicles; Wheels;
Conference_Titel :
Information Engineering and Computer Science (ICIECS), 2010 2nd International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-7939-9
Electronic_ISBN :
2156-7379
DOI :
10.1109/ICIECS.2010.5678157