DocumentCode :
1942619
Title :
Semi-active control algorithms for a smart shock absorber
Author :
Zhou, Dayong ; DeBrunner, Victor ; DeBrunner, Linda S. ; Baldwin, J. David ; Ta, Minh ; Fuller, Justin ; Wang, Yunhua ; Wang, Ping ; Hohenberger, Travis ; Pelot, Sante ; Zuniga, Lorenzo
Author_Institution :
Sch. of Electr. & Comput. Eng., Oklahoma Univ., Norman, OK, USA
fYear :
2005
fDate :
6-8 June 2005
Firstpage :
813
Lastpage :
818
Abstract :
In this work, we develop novel control algorithms suitable for the smart shock absorber (SSA) component of the intelligent vehicle and bridge system (IVBS). The SSA control serves two IVBS purposes: 1) working as the vehicle suspension to increase driver comfort and controllability when the vehicle is on the pavement, and 2) reducing the vibration of highway bridges and thus prolonging bridge life. We propose and discuss in this paper algorithms targeted at the first purpose. Based on the application of active noise control techniques to an active suspension system, we introduce the clipped active noise control (clipped ANC) algorithm. The main advantage of this algorithm is that because it is adaptive, it can effectively balance the comfort and controllability. A simplified control algorithm based on the clipped ANC is also proposed to reduce the implementation cost. The simplified algorithm has no requirements for system modeling, so it substantially reduces the implementation cost. The effectiveness of our proposed algorithm is indicated by analyses, simulations and laboratory testing.
Keywords :
adaptive control; bridges (structures); intelligent control; shock absorbers; shock control; vehicle dynamics; active noise control; adaptive control; bridge system; clipped active noise control; highway bridge; intelligent vehicle; laboratory testing; semi-active control algorithm; semi-active suspension; smart shock absorber; system modeling; Active noise reduction; Bridges; Control systems; Controllability; Costs; Intelligent vehicles; Road vehicles; Shock absorbers; Vehicle driving; Vibration control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Vehicles Symposium, 2005. Proceedings. IEEE
Print_ISBN :
0-7803-8961-1
Type :
conf
DOI :
10.1109/IVS.2005.1505205
Filename :
1505205
Link To Document :
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