TY - GEN
T1 - Nonlinear Disturbance Observer design for estimation of ammonia storage ratio in selected catalytic reduction systems
AU - Ning, Jinbiao
AU - Yan, Fengjun
N1 - Publisher Copyright:
© 2015 American Automatic Control Council.
PY - 2015/7/28
Y1 - 2015/7/28
N2 - Urea based selected catalytic reduction (SCR) system is a promising devise to achieve high NOx reduction and widely used in diesel engine after-treatment systems. The ammonia storage ratio is critical in SCR feedback control for high NOx reduction and low ammonia slip. However, it cannot be directly measured by production sensors. To effectively estimate the ammonia storage ratio on line and reduce the cost by using exhaust gas sensors, a cost-effective Nonlinear Disturbance Observer (NDO) was designed based on part of the three-state SCR model by using NOx sensors only. In this approach, the ammonia storage ratio is treated as an external disturbance and estimated. The stability of the estimation was also analyzed in the paper. The simulation results based on the full-vehicle simulation of FTP-75 test show that the NDO can effectively estimate the ammonia storage ratio when NOx sensor with/without measurement noise or ammonia cross-sensitivity.
AB - Urea based selected catalytic reduction (SCR) system is a promising devise to achieve high NOx reduction and widely used in diesel engine after-treatment systems. The ammonia storage ratio is critical in SCR feedback control for high NOx reduction and low ammonia slip. However, it cannot be directly measured by production sensors. To effectively estimate the ammonia storage ratio on line and reduce the cost by using exhaust gas sensors, a cost-effective Nonlinear Disturbance Observer (NDO) was designed based on part of the three-state SCR model by using NOx sensors only. In this approach, the ammonia storage ratio is treated as an external disturbance and estimated. The stability of the estimation was also analyzed in the paper. The simulation results based on the full-vehicle simulation of FTP-75 test show that the NDO can effectively estimate the ammonia storage ratio when NOx sensor with/without measurement noise or ammonia cross-sensitivity.
UR - https://www.scopus.com/pages/publications/84940951635
U2 - 10.1109/ACC.2015.7170784
DO - 10.1109/ACC.2015.7170784
M3 - 会议稿件
AN - SCOPUS:84940951635
T3 - Proceedings of the American Control Conference
SP - 495
EP - 500
BT - ACC 2015 - 2015 American Control Conference
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2015 American Control Conference, ACC 2015
Y2 - 1 July 2015 through 3 July 2015
ER -