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Discrete-Time Stochastic Sliding Mode Control Using Functional Observation (Hardcover, 1st ed. 2020): Satnesh Singh, S.... Discrete-Time Stochastic Sliding Mode Control Using Functional Observation (Hardcover, 1st ed. 2020)
Satnesh Singh, S. Janardhanan
R3,268 Discovery Miles 32 680 Ships in 10 - 15 working days

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.

Discrete-Time Stochastic Sliding Mode Control Using Functional Observation (Paperback, 1st ed. 2020): Satnesh Singh, S.... Discrete-Time Stochastic Sliding Mode Control Using Functional Observation (Paperback, 1st ed. 2020)
Satnesh Singh, S. Janardhanan
R2,549 Discovery Miles 25 490 Ships in 10 - 15 working days

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.

Discrete-time Sliding Mode Control - A Multirate Output Feedback Approach (Paperback, 2006 ed.): B. Bandyopadhyay, S.... Discrete-time Sliding Mode Control - A Multirate Output Feedback Approach (Paperback, 2006 ed.)
B. Bandyopadhyay, S. Janardhanan
R2,807 Discovery Miles 28 070 Ships in 10 - 15 working days

Sliding mode control is a simple and yet robust control technique, where the system states are made to confine to a selected subset. With the increasing use of computers and discrete-time samplers in controller implementation in the recent past, discrete-time systems and computer based control have become important topics. This monograph presents an output feedback sliding mode control philosophy which can be applied to almost all controllable and observable systems, while at the same time being simple enough as not to tax the computer too much. It is shown that the solution can be found in the synergy of the multirate output sampling concept and the concept of discrete-time sliding mode control.

Advances in Sliding Mode Control - Concept, Theory and Implementation (Paperback, 2013 ed.): B. Bandyopadhyay, S. Janardhanan,... Advances in Sliding Mode Control - Concept, Theory and Implementation (Paperback, 2013 ed.)
B. Bandyopadhyay, S. Janardhanan, Sarah K. Spurgeon
R3,896 Discovery Miles 38 960 Ships in 10 - 15 working days

The sliding mode control paradigm has become a mature technique for the design of robust controllers for a wide class of systems including nonlinear, uncertain and time-delayed systems. This book is a collection of plenary and invited talks delivered at the 12th IEEE International Workshop on Variable Structure System held at the Indian Institute of Technology, Mumbai, India in January 2012. After the workshop, these researchers were invited to develop book chapters for this edited collection in order to reflect the latest results and open research questions in the area. The contributed chapters have been organized by the editors to reflect the various themes of sliding mode control which are the current areas of theoretical research and applications focus; namely articulation of the fundamental underpinning theory of the sliding mode design paradigm, sliding modes for decentralized system representations, control of time-delay systems, the higher order sliding mode concept, results applicable to nonlinear and underactuated systems, sliding mode observers, discrete sliding mode control together with cutting edge research contributions in the application of the sliding mode concept to real world problems. This book provides the reader with a clear and complete picture of the current trends in Variable Structure Systems and Sliding Mode Control Theory.

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