A design of robust two-degree-of-freedom boiler-turbine control systems using H/sub ∞/ optimization method
Chang-Sun Hwang, Dong-Wan Kim
Abstract
Chang-Sun Hwang, Dong-Wan Kim
Abstract
This paper deals with the robust two-degree-of-freedom multivariable control system using H/sub /spl infin// optimization method which can achieve the robust stability and the robust performance property simultaneously. The feedback controller is designed using H/sub /spl infin// optimization method for mixed sensitivity function. The feedforward controller is designed using H/sub 2/ optimization method to minimize the error of both the transfer function of the optimal model and the overall transfer function. The feedback controller can obtain the robust stability property. The feedforward controller can obtain the robust performance property under modelling error. The robust two-degree-of-freedom multivariable control system is applied to the nonlinear multivariable boiler-turbine system. The boiler turbine system is analyzed at various operation points. The validity of the proposed method is verified in comparison with the LQG/LTR design method.
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This paper deals with the robust two-degree-of-freedom multivariable control system using H/sub /spl infin// optimization method which can achieve the robust stability and the robust performance property simultaneously. The feedback controller is designed using H/sub /spl infin// optimization method for mixed sensitivity function. The feedforward controller is designed using H/sub 2/ optimization method to minimize the error of both the transfer function of the optimal model and the overall transfer function. The feedback controller can obtain the robust stability property. The feedforward controller can obtain the robust performance property under modelling error. The robust two-degree-of-freedom multivariable control system is applied to the nonlinear multivariable boiler-turbine system. The boiler turbine system is analyzed at various operation points. The validity of the proposed method is verified in comparison with the LQG/LTR design method.
Key concepts: Control theory (sociology), Multivariable calculus, Transfer function, Feed forward, Robust control, Linear-quadratic-Gaussian control, Control system, Control engineering