
Tensor Product Model Transformation in Polytopic Model-Based Control by Yeung Yam
Tensor Product Model Transformation in Polytopic Model-Based Control offers a new perspective of control system design. Instead of relying solely on the formulation of more effective LMIs, which is the widely adopted approach in existing LMI-related studies, this cutting-edge book calls for a systematic modification and reshaping of the polytopic convex hull to achieve enhanced performance. Varying the convexity of the resulting TP canonical form is a key new feature of the approach. The book concentrates on reducing analytical derivations in the design process, echoing the recent paradigm shift on the acceptance of numerical solution as a valid form of output to control system problems. The salient features of the book include:
- Presents a new HOSVD-based canonical representation for (qLPV) models that enables trade-offs between approximation accuracy and computation complexity
- Supports a conceptually new control design methodology by proposing TP model transformation that offers a straightforward way of manipulating different types of convexity to appear in polytopic representation
- Introduces a numerical transformation that has the advantage of readily accommodating models described by non-conventional modeling and identification approaches, such as neural networks and fuzzy rules
- Presents a number of practical examples to demonstrate the application of the approach to generate control system design for complex (qLPV) systems and multiple control objectives.
The authors’ approach is based on an extended version of singular value decomposition applicable to hyperdimensional tensors. Under the approach, trade-offs between approximation accuracy and computation complexity can be performed through the singular values to be retained in the process. The use of LMIs enables the incorporation of multiple performance objectives into the control design problem and assurance of a solution via convex optimization if feasible. Tensor Product Model Transformation in Polytopic Model-Based Control includes examples and incorporates MATLAB® Toolbox TPtool. It provides a reference guide for graduate students, researchers, engineers, and practitioners who are dealing with nonlinear systems control applications.
-
Chaos in Automatic Control
-
Advances in Missile Guidance, Control, and Estimation
-
Robust Formation Control for Multiple Unmanned Aerial Vehicles
-
Analysis and Synthesis of Fuzzy Control Systems
-
Control of Nonlinear Systems via PI, PD and PID
-
Wireless Ad hoc and Sensor Networks
-
Modeling and Control of Complex Systems
-
Distributed Adaptive Consensus Control of Uncertain Multi-Agent Systems
-
Optimal Event-Triggered Control Using Adaptive Dynamic Programming
-
Control of Nonlinear Systems
-
Maneuverable Formation Control in Constrained Space
-
Reinforcement Learning and Dynamic Programming Using Function Approximators
-
Quantitative Process Control Theory
-
Modeling and Control for Micro/Nano Devices and Systems
-
Sliding Mode Control in Electro-Mechanical Systems
-
System Modeling and Control with Resource-Oriented Petri Nets
-
Variable Gain Control and Its Applications in Energy Conversion
-
Optimal Control
-
Cooperative Control of Multi-Agent Systems
-
Multi-Agent Systems
-
Deterministic Learning Theory for Identification, Recognition, and Control
-
Synchronization and Control of Multiagent Systems
-
Anti-Disturbance Control for Systems with Multiple Disturbances
-
Fundamentals in Modeling and Control of Mobile Manipulators
-
Intelligent Diagnosis and Prognosis of Industrial Networked Systems
-
Nonlinear Control of Dynamic Networks
-
End-to-End Adaptive Congestion Control in TCP/IP Networks
-
Electric and Plug-in Hybrid Vehicle Networks
-
Fuzzy Controller Design
-
Modern Control Engineering
-
Nonlinear Control of Electric Machinery
-
Discrete-Time Recurrent Neural Control
-
Nonlinear Pinning Control of Complex Dynamical Networks
-
Classical Feedback Control with Nonlinear Multi-Loop Systems
-
Adaptive Control of Dynamic Systems with Uncertainty and Quantization
-
Optimal Networked Control Systems with MATLAB
"… well written and easily readable… The examples and applications to 3 Degrees Of Freedom (DOFs) control schemes for helicopters, models for aeroelastic wing sections and models for controlling the behavior of suspension system in heavy trucks are the main strength of the book. … for control engineers with a solid mathematical formation as well as control theorists and even applied mathematicians."—zbMATH 1308 in 2015
"The book provides an introduction to a method that has potential to significantly advance the theory and practice of control system design. The modeling step is frequently the most time-consuming stage of practical control system design. The unifying TP representation of quasi LPV models described in this book has potential to make this stage more efficient as well as enabling many of the powerful LMI-based control design methods for LPV systems to be applied to practical problems."—James Whidborne, Cranfield University, Bedfordshire, UK
"… well written and easily readable. … The examples and applications to 3 Degrees Of Freedom (DOFs) control schemes for helicopters, models for aeroelastic wing sections and models for controlling the behavior of suspension system in heavy trucks are the main strength of the book. … for control engineers with a solid mathematical formation as well as control theorists and even applied mathematicians."
—zbMATH 1308 in 2015
"The book provides an introduction to a method that has potential to significantly advance the theory and practice of control system design. The modeling step is frequently the most time-consuming stage of practical control system design. The unifying TP representation of quasi LPV models described in this book has potential to make this stage more efficient as well as enabling many of the powerful LMI-based control design methods for LPV systems to be applied to practical problems."
—James Whidborne, Cranfield University, Bedfordshire, UK
| SKU | Unavailable |
| ISBN 13 | 9781138077782 |
| ISBN 10 | 113807778X |
| Title | Tensor Product Model Transformation in Polytopic Model-Based Control |
| Author | Yeung Yam |
| Series | Automation And Control Engineering |
| Condition | Unavailable |
| Binding Type | Paperback |
| Publisher | CRC Press |
| Year published | 2017-03-29 |
| Number of pages | 262 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |



































