Description: The focus of this book is on the design of a specific control strategy using digital computers. This control strategy referred to as Sliding Mode Control (SMC), has its roots in (continuous-time) relay control. This book aims to explain recent investigations' output in the field of discrete-time sliding mode control (DSMC). The book starts by explaining a new robust LMI-based (state-feedback and observer-based output-feedback) DSMC including a new scheme for sparsely distributed control. It includes a novel event-driven control mechanism, called actuator-based event-driven scheme, using a synchronized-rate biofeedback system for heart rate regulation during cycle-ergometer. Key Features: Focuses on LMI-based SMC (sliding mode control) for uncertain discrete-time system using novel nonlinear components in the control law Makes reader understand the techniques of designing a discrete controller based on the flexible sliding functions Proposes new algorithms for sparsifying control and observer network through multi-objective optimization frameworks Discusses a framework for the design of SMC for two-dimensional systems along with analyzing the controllability of two-dimensional systems Discusses novel schemes for sparsifying the control network
Price: 69.18 AUD
Location: Hillsdale, NSW
End Time: 2024-11-13T20:22:02.000Z
Shipping Cost: 26.54 AUD
Product Images
Item Specifics
Return shipping will be paid by: Buyer
Returns Accepted: Returns Accepted
Item must be returned within: 30 Days
Return policy details:
EAN: 9780367571412
UPC: 9780367571412
ISBN: 9780367571412
MPN: N/A
Book Title: Advances in Discrete-Time Sliding Mode Control: Th
Item Length: 23.4 cm
Number of Pages: 228 Pages
Language: English
Publication Name: Advances in Discrete-Time Sliding Mode Control: Theory and Applications
Publisher: Taylor & Francis Ltd
Publication Year: 2020
Subject: Physics
Item Height: 234 mm
Item Weight: 408 g
Type: Textbook
Author: Steven Su, Branko George Celler, Ahmadreza Argha, Hung Tan Nguyen, Li Li
Item Width: 156 mm
Format: Paperback