DocumentCode :
1560072
Title :
Parametric fault diagnosis for electrohydraulic cylinder drive units
Author :
Tan, Hong-Zhou ; Sepehri, Nariman
Author_Institution :
Dept. of Mech. & Ind. Eng., Manitoba Univ., Winnipeg, Man., Canada
Volume :
49
Issue :
1
fYear :
2002
fDate :
2/1/2002 12:00:00 AM
Firstpage :
96
Lastpage :
106
Abstract :
A novel model-based methodology for fault diagnosis (FD) of nonlinear hydraulic drive systems is presented in this paper. Due to its linear dependence upon parameters, a second-truncated Volterra nonlinear model is first used to characterize such systems. The versatile order-recursive estimation scheme is employed to determine the values of parameters in the Volterra model. The scheme also avoids separate determination of the model order; thus, the complexity of the search process is reduced. Next, it is shown that the estimated parameters, representing different states of the system, normal as well as faulty conditions, can be used to detect and isolate system faults in a geometric domain. Very promising results are exhibited via simulations as well as laboratory experiments. It is concluded that the developed parametric FD technique has potential to provide efficient condition monitoring and/or preventive maintenance in hydraulic actuator circuits
Keywords :
Volterra equations; actuators; condition monitoring; electrohydraulic control equipment; fault diagnosis; recursive estimation; Volterra nonlinear models; efficient condition monitoring; electrohydraulic actuators; electrohydraulic cylinder drive units; estimated parameters; fault diagnosis; faulty conditions; geometric domain; geometric projection scheme; hydraulic actuator circuits; linear dependence; nonlinear hydraulic drive systems; order-recursive estimation scheme; parameter estimation; parametric fault diagnosis; preventive maintenance; search process complexity reduction; second-truncated Volterra nonlinear model; system faults isolation; Circuit faults; Circuit simulation; Electrical fault detection; Electrohydraulics; Fault detection; Fault diagnosis; Hydraulic drives; Laboratories; Parameter estimation; State estimation;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/41.982253
Filename :
982253
Link To Document :
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