Publication | Closed Access
Real-Time Implementation of Fault-Tolerant Control Systems With Performance Optimization
637
Citations
28
References
2013
Year
Adaptive Residual GeneratorReal-time ControlEngineeringRobust ControlReal-time System DesignTennessee EastmanReal-time ImplementationControl SystemsStabilityReliability EngineeringSystems EngineeringFault-tolerant ControlMechatronicsComputer EngineeringOnline SchemesAutomationProcess ControlBusinessReal-time SystemsFault Detection
In this paper, two online schemes for an integrated design of fault-tolerant control (FTC) systems with application to Tennessee Eastman (TE) benchmark are proposed. Based on the data-driven design of the proposed fault-tolerant architecture whose core is an observer/residual generator based realization of the Youla parameterization of all stabilization controllers, FTC is achieved by an adaptive residual generator for the online identification of the fault diagnosis relevant vectors, and an iterative optimization method for system performance enhancement. The performance and effectiveness of the proposed schemes are demonstrated through the TE benchmark model.
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