DocumentCode :
647335
Title :
Dynamic Load Emulation of Regenerative Braking System during Electrified Vehicle Braking States Transition
Author :
He Chengkun ; Zhang Junzhi ; Wang Lifang ; Gou Jinfang ; Li Yutong
Author_Institution :
Key Lab. of Power Electron. & Electr. Drives, Inst. of Electr. Eng., Beijing, China
fYear :
2013
fDate :
15-18 Oct. 2013
Firstpage :
1
Lastpage :
5
Abstract :
Considering the influence of the transition process of a combined brake system between regenerative brake and friction brake, a closed-loop speed control method was proposed to emulate the load of regenerative braking system based on motor- dynamometer set. By analyzing the dynamics of regenerative braking system and emulation system, the key for emulating load of regenerative braking system was unveiled. The key point was to deal with the problem of the disturbance of the braking states transition. Therefore a combination controller including a linear quadratic optimal controller and a sliding mode controller was designed, while the former was used to resist the disturbance, and the latter was used to compensate the offset of performance index bringing by the nonlinear part. Simulations were carried out to test the effect of the proposed combination control. The results showed that the designed combination control could resist the disturbance effectively and has better dynamic characteristics than traditional PI control.
Keywords :
angular velocity control; closed loop systems; control system synthesis; dynamometers; electric motors; electric vehicles; friction; linear quadratic control; load regulation; nonlinear control systems; regenerative braking; variable structure systems; PI control; closed-loop speed control method; dynamic load emulation system; electrified vehicle braking state transition; friction braking; linear quadratic optimal controller design; motor-dynamometer set; performance index offset; regenerative braking system; sliding mode controller design;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vehicle Power and Propulsion Conference (VPPC), 2013 IEEE
Conference_Location :
Beijing
Type :
conf
DOI :
10.1109/VPPC.2013.6671677
Filename :
6671677
Link To Document :
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