DocumentCode :
1997368
Title :
Research on Active Suspension Control Strategy Based on the Model with Parameters of Hydraulic System
Author :
Zhou Chenyu ; Zhang Shuo ; Shi Peilong ; Zhang Peipei
Author_Institution :
Automobile Sch., Chang´an Univ., Xi´an, China
fYear :
2013
fDate :
3-4 Dec. 2013
Firstpage :
172
Lastpage :
176
Abstract :
The disadvantage that ordinary active suspension model is in low accuracy and practicability which is caused by the neglect of actuator motion is brought forth through analyzing the assemble of active suspension. The model including hydraulic system parameters is obtained through building the active suspension hydraulic system model. The weighting coefficient matrix of car body acceleration, suspension deflection, and tyre displacement is determined through analyzing the principle of LQG control and the active suspension LQG control strategy is brought out. The conclusion that active suspension promote more control stability and riding comfort than passive suspension and PID control is made by simulation and comparing with passive suspension and active suspension PID control. The force output amplitude performance of the LQG control is better than the PID control which can be get from the force signals.
Keywords :
automobiles; ergonomics; hydraulic systems; linear quadratic Gaussian control; matrix algebra; robust control; suspensions (mechanical components); three-term control; tyres; LQG control principle analysis; active suspension LQG control strategy; active suspension PID control; active suspension assemble analysis; active suspension control strategy; active suspension hydraulic system model; actuator motion; car body acceleration; control stability; force output amplitude performance; force signals; hydraulic system parameters; passive suspension PID control; riding comfort; suspension deflection; tyre displacement; weighting coefficient matrix; Equations; Hydraulic systems; Mathematical model; PD control; Roads; Suspensions; Vehicle dynamics; LQG control; active suspension; hydraulic system model; simulation; state equation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Systems (GCIS), 2013 Fourth Global Congress on
Conference_Location :
Hong Kong
Print_ISBN :
978-1-4799-2885-9
Type :
conf
DOI :
10.1109/GCIS.2013.33
Filename :
6805930
Link To Document :
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