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Robust control-oriented linear fract...
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Roy, Tamal.
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Robust control-oriented linear fractional transform modelling = applications for the [mu]-synthesis based H[infinity] control /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Robust control-oriented linear fractional transform modelling/ by Tamal Roy, Ranjit Kumar Barai.
Reminder of title:
applications for the [mu]-synthesis based H[infinity] control /
remainder title:
applications for the μ-synthesis based H∞ control
Author:
Roy, Tamal.
other author:
Barai, Ranjit Kumar.
Published:
Singapore :Springer Nature Singapore : : 2023.,
Description:
xi, 161 p. :ill. (chiefly color), digital ;24 cm.
[NT 15003449]:
Introduction -- Mathematical Modelling of Real Physical System -- Control Oriented Linear Fractional Transformation -- Synthesis Based H∞ Control Theory -- Generalized Control Oriented LFT Modelling of a Coupled Uncertain MIMO System -- Control-Oriented LFT Modelling of a Two-DOF Spring- Mass-Dashpot Dynamic System -- Control Oriented LFT Modelling and H∞ Control of Twin Rotor MIMO System -- Control Oriented LFT Modelling and H∞ Control of Differentially Driven Wheeled Mobile Robot -- Control Oriented LFT Modelling and H∞ Control of Differentially Driven Wheeled Mobile Robot with Slip Dynamics.
Contained By:
Springer Nature eBook
Subject:
Linear control systems. -
Online resource:
https://doi.org/10.1007/978-981-19-7462-5
ISBN:
9789811974625
Robust control-oriented linear fractional transform modelling = applications for the [mu]-synthesis based H[infinity] control /
Roy, Tamal.
Robust control-oriented linear fractional transform modelling
applications for the [mu]-synthesis based H[infinity] control /[electronic resource] :applications for the μ-synthesis based H∞ controlby Tamal Roy, Ranjit Kumar Barai. - Singapore :Springer Nature Singapore :2023. - xi, 161 p. :ill. (chiefly color), digital ;24 cm. - Studies in systems, decision and control,v. 4532198-4190 ;. - Studies in systems, decision and control ;v. 453..
Introduction -- Mathematical Modelling of Real Physical System -- Control Oriented Linear Fractional Transformation -- Synthesis Based H∞ Control Theory -- Generalized Control Oriented LFT Modelling of a Coupled Uncertain MIMO System -- Control-Oriented LFT Modelling of a Two-DOF Spring- Mass-Dashpot Dynamic System -- Control Oriented LFT Modelling and H∞ Control of Twin Rotor MIMO System -- Control Oriented LFT Modelling and H∞ Control of Differentially Driven Wheeled Mobile Robot -- Control Oriented LFT Modelling and H∞ Control of Differentially Driven Wheeled Mobile Robot with Slip Dynamics.
This book covers a new paradigm of system modeling - the robust control-oriented linear fractional transformation (LFT) modeling. A dynamic system expressed in LFT modeling framework paves the way for the application of modern robust controller design technique like μ-synthesis method for controller design. This book covers the generalized robust control-oriented LFT modeling representation of the MIMO system depending upon the uncertainty structure, system dynamics, and the dimensions of the input-output. The modeling framework results into a compact and manageable representation of uncertainty modeling in the form of feedback-like structure that is suitable for design and implementation of the robust control technique like μ-synthesis-based H∞ control theory. This book also describes the application of the proposed methodology in a variety of advanced mechatronic systems like the Twin Rotor MIMO system, wheeled mobile robot, and an industrial robot arm.
ISBN: 9789811974625
Standard No.: 10.1007/978-981-19-7462-5doiSubjects--Topical Terms:
706563
Linear control systems.
LC Class. No.: TJ220 / .R69 2023
Dewey Class. No.: 629.832
Robust control-oriented linear fractional transform modelling = applications for the [mu]-synthesis based H[infinity] control /
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Introduction -- Mathematical Modelling of Real Physical System -- Control Oriented Linear Fractional Transformation -- Synthesis Based H∞ Control Theory -- Generalized Control Oriented LFT Modelling of a Coupled Uncertain MIMO System -- Control-Oriented LFT Modelling of a Two-DOF Spring- Mass-Dashpot Dynamic System -- Control Oriented LFT Modelling and H∞ Control of Twin Rotor MIMO System -- Control Oriented LFT Modelling and H∞ Control of Differentially Driven Wheeled Mobile Robot -- Control Oriented LFT Modelling and H∞ Control of Differentially Driven Wheeled Mobile Robot with Slip Dynamics.
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This book covers a new paradigm of system modeling - the robust control-oriented linear fractional transformation (LFT) modeling. A dynamic system expressed in LFT modeling framework paves the way for the application of modern robust controller design technique like μ-synthesis method for controller design. This book covers the generalized robust control-oriented LFT modeling representation of the MIMO system depending upon the uncertainty structure, system dynamics, and the dimensions of the input-output. The modeling framework results into a compact and manageable representation of uncertainty modeling in the form of feedback-like structure that is suitable for design and implementation of the robust control technique like μ-synthesis-based H∞ control theory. This book also describes the application of the proposed methodology in a variety of advanced mechatronic systems like the Twin Rotor MIMO system, wheeled mobile robot, and an industrial robot arm.
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Intelligent Technologies and Robotics (SpringerNature-42732)
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EB TJ220 .R69 2023
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