Abstract:
The practice of control strategies and their applications on industrial systems requires reliable models in implementation, with an identification of their variables invo...Show MoreMetadata
Abstract:
The practice of control strategies and their applications on industrial systems requires reliable models in implementation, with an identification of their variables involved in the control sequence. Indeed, several complexity limitations of these systems require the use of linearization around the operating points, to ensure the stability of the system. To this end, this work proposes the development of a closed-loop identification strategy, applied to a two-shaft gas turbine, using a linear control with state feedback. This approach makes it possible to meet stability objectives by ensuring better performance in control variables of the studied gas turbine.
Date of Conference: 20-23 February 2023
Date Added to IEEE Xplore: 06 February 2024
ISBN Information:
ISSN Information:
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- IEEE Keywords
- Index Terms
- Control Approach ,
- Linear Control ,
- Gas Turbine ,
- Reliable Control ,
- Closed-loop Identification ,
- Control Strategy ,
- Industrial Systems ,
- State Feedback ,
- High Pressure ,
- Optimal Control ,
- Linear System ,
- Rotational Speed ,
- Symmetric Matrix ,
- System Output ,
- Positive Definite Matrix ,
- State Representation ,
- Exhaust Gas ,
- Actual Output ,
- Presence Of Disturbances ,
- Linear Quadratic Regulator ,
- Linear Quadratic Gaussian ,
- Shaft Speed ,
- Turbine System ,
- Bode Diagram ,
- Experimental Output
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Control Approach ,
- Linear Control ,
- Gas Turbine ,
- Reliable Control ,
- Closed-loop Identification ,
- Control Strategy ,
- Industrial Systems ,
- State Feedback ,
- High Pressure ,
- Optimal Control ,
- Linear System ,
- Rotational Speed ,
- Symmetric Matrix ,
- System Output ,
- Positive Definite Matrix ,
- State Representation ,
- Exhaust Gas ,
- Actual Output ,
- Presence Of Disturbances ,
- Linear Quadratic Regulator ,
- Linear Quadratic Gaussian ,
- Shaft Speed ,
- Turbine System ,
- Bode Diagram ,
- Experimental Output
- Author Keywords