Satnesh Singh S. Janardhanan Singh Discrete-Time Stochastic Sliding Mode Control Using Functional Observation

Discrete-Time Stochastic Sliding Mode Control Using Functional Observation

von Satnesh Singh S. Janardhanan

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Beschreibung

This book extrapolates many of the concepts that are well defined for discrete-time deterministic sliding-mode control for use with discrete-time stochastic systems. It details sliding-function designs for various categories of linear time-invariant systems and its application for control. The resulting sliding-mode control addresses robustness issues and the functional-observer approach reduces the observer order substantially.

Sliding-mode control (SMC) is designed for discrete-time stochastic systems, extended so that states lie within a specified band, and able to deal with incomplete information. Functional-observer-based SMC is designed for various clauses of stochastic systems: discrete-time; discrete-time with delay; state time-delayed; and those with parametric uncertainty. Stability considerations arising because of parametric uncertainty are taken into account and, where necessary, the effects of unmatched uncertainties mitigated. A simulation example is usedto explain the use of the functional-observer approach to SMC design.

Discrete-Time Stochastic Sliding-Mode Control Using Functional Observation will interest all researchers working in sliding-mode control and will be of particular assistance to graduate students in understanding the changes in design philosophy that arise when changing from continuous- to discrete-time systems. It helps to pave the way for further progress in applications of discrete-time SMC.
This book extrapolates many of the concepts that are well defined for discrete-time deterministic sliding-mode control for use with discrete-time stochastic systems. It details sliding-function designs for various categories of linear time-invariant systems and its application for control. The resulting sliding-mode control addresses robustness issues and the functional-observer approach reduces the observer order substantially.

Sliding-mode control (SMC) is designed for discrete-time stochastic systems, extended so that states lie within a specified band, and able to deal with incomplete information. Functional-observer-based SMC is designed for various clauses of stochastic systems: discrete-time; discrete-time with delay; state time-delayed; and those with parametric uncertainty. Stability considerations arising because of parametric uncertainty are taken into account and, where necessary, the effects of unmatched uncertainties mitigated. A simulation example is used to explain the use of the functional-observer approach to SMC design.

Discrete-Time Stochastic Sliding-Mode Control Using Functional Observation will interest all researchers working in sliding-mode control and will be of particular assistance to graduate students in understanding the changes in design philosophy that arise when changing from continuous- to discrete-time systems. It helps to pave the way for further progress in applications of discrete-time SMC.
Broadens understanding of sliding-mode control of stochastic discrete-time systems Provides theoretical groundwork for more diverse applications of sliding-mode control Helps readers to cope with various sources of process and measurement noise in their control designs

Autor*in

Satnesh Singh

Themen in »Discrete-Time Stochastic Sliding Mode Control Using Functional Observation«

Sliding-mode Control Discrete-time Systems Time-delay Systems Stochastic Systems Functional Observation Parametric Uncertainty

Stimmen zu »Discrete-Time Stochastic Sliding Mode Control Using Functional Observation«

Details

ISBN: 9783030327996
Verlag: Springer International Publishing
Erscheinung: 26.11.2019

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