Title:
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Robust PI-D controller design for descriptor systems using regional pole placement and/or $H_2$ performance (English) |
Author:
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Veselý, Vojtech |
Author:
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Körösi, Ladislav |
Language:
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English |
Journal:
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Kybernetika |
ISSN:
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0023-5954 (print) |
ISSN:
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1805-949X (online) |
Volume:
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56 |
Issue:
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4 |
Year:
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2020 |
Pages:
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810-820 |
Summary lang:
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English |
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Category:
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math |
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Summary:
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The paper deals with the problem of obtaining a robust PI-D controller design procedure for linear time invariant descriptor uncertain polytopic systems using the regional pole placement and/or $H_2$ criterion approach in the form of a quadratic cost function with the state, derivative state and plant input (QSR). In the frame of Lyapunov Linear Matrix Inequality (LMI) regional pole placement approach and/or $H_2$ quadratic cost function based on Bellman-Lyapunov equation, the designed novel design procedure guarantees the robust properties of closed-loop system with parameter dependent quadratic stability/quadratic stability. In the obtained design procedure the designer could use controller with different structures such as P, PI, PID, PI-D. For the PI-D's D-part of controller feedback the designer could choose any available output/state derivative variables of descriptor systems. Obtained design procedure is in the form of Bilinear Matrix Inequality (BMI). The effectiveness of the obtained results is demonstrated on two examples. (English) |
Keyword:
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descriptor system |
Keyword:
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robust PI-D controller |
Keyword:
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state derivative feedback |
Keyword:
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output feedback |
Keyword:
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pole placement |
MSC:
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93B51 |
MSC:
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93B52 |
MSC:
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93B55 |
MSC:
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93B60 |
idZBL:
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Zbl 07286048 |
idMR:
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MR4168537 |
DOI:
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10.14736/kyb-2020-4-0810 |
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Date available:
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2020-10-30T16:33:55Z |
Last updated:
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2021-02-23 |
Stable URL:
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http://hdl.handle.net/10338.dmlcz/148385 |
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Reference:
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