
Robust Model Predictive Control for Autonomous Underwater Vehicles by Isah A Jimoh
This book offers a comprehensive and practical guide to the design of advanced model predictive control (MPC) strategies for the three-dimensional motion control of autonomous underwater vehicles (AUVs). It addresses the full six-degrees-of-freedom dynamics of AUVs using convex optimization-based MPC techniques, making the resulting control problems computationally tractable.
The book adopts a structured two-stage approach. The first stage provides a self-contained tutorial on advanced MPC design for uncertain systems, including strategies to ensure closed-loop stability. This equips students, academic researchers and engineers with the theoretical and practical foundations needed to understand and apply advanced MPC to complex systems. The second stage applies these methods to the real-world challenge of three-dimensional AUV motion control, offering novel control formulations that outperform conventional methods.
Throughout the book, special attention is given to robustness, constraint handling and optimization structure. Through detailed case studies and extensive simulations, including downloadable MATLABĀ® implementations in many cases, the book validates the proposed strategies against conventional methods using quantitative performance metrics to demonstrate improved control accuracy, robustness and efficiency. This makes Robust Model Predictive Control for Autonomous Underwater Vehicles a valuable resource not only for researchers and postgraduate students, but also for practicing engineers working on marine robotics and model-based control system design.
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Robust Autonomous Guidance
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Model-Based Control of MassāStiffnessāDamping Systems
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Pneumatic Servo Systems Analysis
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Control of Large Wind Energy Systems
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Predictive Functional Control
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Advanced Control and Supervision of Mineral Processing Plants
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Networked and Distributed Predictive Control
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Fault Detection and Fault-Tolerant Control Using Sliding Modes
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Reset Control Systems
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Industrial Process Identification and Control Design
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Cooperative Control of Multi-agent Systems
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Sliding-Mode Control of PEM Fuel Cells
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Control of Integral Processes with Dead Time
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Internet-based Control Systems
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Drives and Control for Industrial Automation
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PID Control in the Third Millennium
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Model Predictive Control of Wastewater Systems
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Structured Controllers for Uncertain Systems
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Fractional-order Systems and Controls
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Quad Rotorcraft Control
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Active Control of Flexible Structures
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Detection and Diagnosis of Stiction in Control Loops
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Motion Coordination for VTOL Unmanned Aerial Vehicles
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Vehicle-Manipulator Systems
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Optimal Control of Hybrid Vehicles
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Optimal Control and Optimization of Stochastic Supply Chain Systems
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Dynamics and Control of Switched Electronic Systems
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Hybrid Predictive Control for Dynamic Transport Problems
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Multivariate Statistical Process Control
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Model-Based Fault Diagnosis Techniques
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Adaptive Control of Solar Energy Collector Systems
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Practical Grey-box Process Identification
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Relay Tuning of PID Controllers
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Control of Solar Energy Systems
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Deadlock Resolution in Automated Manufacturing Systems
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Induction Motor Control Design
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Data-driven Methods for Fault Detection and Diagnosis in Chemical Processes
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Dynamics and Control of Industrial Cranes
Dr Isah A. Jimoh received his M.Sc. degree in Applied Instrumentation and Control from Glasgow Caledonian University, United Kingdom, in 2019, and completed his Ph.D. in Optimal Control Theory and Applications at the University of Strathclyde, Glasgow, in 2025. His research spans a wide range of interests, including model predictive control, nonlinear time-invariant control, dynamic optimisation, renewable energy systems, marine robotics, mechatronic systems and deep learning. Dr Jimoh has been recognised for academic excellence through prestigious awards such as the Commonwealth Scholarship Award from the UK Foreign, Commonwealth & Development Office (FCDO), and the Petroleum Technology Development Fund (PTDF) Award. He currently serves as a Lead Control Engineer at GE Vernova, where he applies advanced techniques to industrial challenges in the energy sector. He has authored over ten publications in leading international journals and conferences and is an active peer-reviewer for several high-impact journals and technical conferences. His work reflects a strong commitment to bridging theoretical research with real-world engineering applications.
| SKU | Unavailable |
| ISBN 13 | 9783032168436 |
| ISBN 10 | 3032168430 |
| Title | Robust Model Predictive Control for Autonomous Underwater Vehicles |
| Author | Isah A Jimoh |
| Series | Advances In Industrial Control |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Springer Nature Switzerland AG |
| Year published | 2026-06-05 |
| Number of pages | 207 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |





































