DocumentCode
3265821
Title
Supervisory control of a pilot-scale cooling loop
Author
Villez, Kris ; Venkatasubramanian, Venkat ; Garcia, Humberto ; Rieger, Craig
Author_Institution
Sch. of Chem. Eng., Purdue Univ., West Lafayette, IN, USA
fYear
2011
fDate
9-11 Aug. 2011
Firstpage
75
Lastpage
80
Abstract
We combine a previously developed strategy for Fault Detection and Identification (FDI) with a supervisory controller in closed loop. The combined method is applied to a model of a pilot-scale cooling loop of a nuclear plant, which includes Kalman filters and a model-based predictive controller as part of normal operation. The system has two valves available for flow control meaning that some redundancy is available. The FDI method is based on likelihood ratios for different fault scenarios which in turn are derived from the application of the Kalman filter. A previously introduced extension of the FDI method is used here to enable detection and identification of non-linear faults like stuck valve problems and proper accounting of the time of fault introduction. The supervisory control system is designed so to take different kinds of actions depending on the status of the fault diagnosis task and on the type of identified fault once diagnosis is complete. Some faults, like sensor bias and drift, are parametric in nature and can be adjusted without need for reconfiguration of the regulatory control system. Other faults, like a stuck valve problem, require reconfiguration of the regulatory control system. The whole strategy is demonstrated for several scenarios.
Keywords
Kalman filters; SCADA systems; fault diagnosis; flow control; nuclear power stations; predictive control; FDI method; Kalman filters; fault detection and identification; fault diagnosis task; flow control; model-based predictive controller; nonlinear faults; nuclear plant; pilot-scale cooling loop; regulatory control system; sensor bias; sensor drift; stuck valve problems; supervisory control; Axles; Blades; Control systems; Fault diagnosis; Kalman filters; Mathematical model; Valves; Fault Detection and Identification; Kalman filter; Model Predictive Control (MPC); Supervisory control; model-based diagnosis;
fLanguage
English
Publisher
ieee
Conference_Titel
Resilient Control Systems (ISRCS), 2011 4th International Symposium on
Conference_Location
Boise, ID
Print_ISBN
978-1-4244-9294-7
Electronic_ISBN
978-1-4244-9292-3
Type
conf
DOI
10.1109/ISRCS.2011.6016092
Filename
6016092
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