Design of \(H_2 / H_{\infty}\) RMPC for boiler superheated steam temperature based on memoryless feedback multistep strategy (Q1992480)
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scientific article; zbMATH DE number 6971850
| Language | Label | Description | Also known as |
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| English | Design of \(H_2 / H_{\infty}\) RMPC for boiler superheated steam temperature based on memoryless feedback multistep strategy |
scientific article; zbMATH DE number 6971850 |
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Design of \(H_2 / H_{\infty}\) RMPC for boiler superheated steam temperature based on memoryless feedback multistep strategy (English)
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5 November 2018
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Summary: The collection of superheated steam temperature models of a thermal power plant under different loads can be approximated to ``multimodel'' linear uncertain systems. After transformation, the tracking system was obtained from ``multimodel'' linear uncertain systems. For this tracking uncertain system, a mixed \(H_2 / H_{\infty}\) robust model predictive control (HRMPC) based on a memoryless feedback multistep strategy is proposed. A multistep control strategy combines the advantages of predictive control rolling optimization with memoryless feedback control thoughts. It could effectively decrease the controller optimization parameter and ensure closed-loop system stability, and, at the same time, it also achieved acceptable control performance. Successful application to the superheated steam temperature system of a 300 MW thermal power plant verified the study of the HRMPC-P cascade controller design scheme in terms of feasibility and effectiveness.
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