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Multi-Objective Control of Nonlinear Boiler-Turbine Dynamics

By: ISA Transactions
10 February, 2016
1 min read
Multi-Objective Control of Nonlinear Boiler-Turbine Dynamics
Multi-Objective Control of Nonlinear Boiler-Turbine Dynamics
Research paper investigates controller design approaches for nonlinear boiler-turbine dynamics subject to actuator magnitude and rate constraints.

This post is an excerpt from the journal ISA Transactions.  All ISA Transactions articles are free to ISA members, or can be purchased from Elsevier Press.

Abstract:

This paper investigates multi-objective controller design approaches for nonlinear boiler-turbine dynamics subject to actuator magnitude and rate constraints. System nonlinearity is handled by a suitable linear parameter varying system representation with drum pressure as the system steam-turbine-condenser varying parameter. Variation of the drum pressure is represented by suitable norm-bounded uncertainty and affine dependence on system matrices. Based on linear matrix inequality algorithms, the magnitude and rate constraints on the actuator and the deviations of fluid density and water level are formulated while the tracking abilities on the drum pressure and power output are optimized.

Variation ranges of drum pressure and magnitude tracking commands are used as controller design parameters, determined according to the boiler-turbine's operation range.

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2006 Elsevier Science Ltd. All rights reserved.

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