
Matrix-Weighted Graphs by Minh Hoang Trinh
This book presents and systematizes results in matrix-weighted graphs, a powerful tool for modeling and analysis of multi-dimensional networked systems. The authors select topics addressing fundamental issues, which they arrange in four parts:
- graphs and networks with matrix weighting, showing how the matrix-weighted Laplacian forms the foundation for further theoretical developments;
- development of algorithms for various purposes from the determination of connectivity to quantitative measurement as a key pillar in network design and analysis;
- control-theoretic integration, providing a framework with the matrix-weighted consensus algorithm playing a central role and which coordinates interacting dynamical agents from each vertex in a cooperative and distributed manner; and
- applications of matrix-weighted graphs in network synchronization, social networks, networked input–output economics, network localization and formation control.
The theoretical results provide a firm foundation for researchers wishing to pursue the study of matrix-weighted networks and related topics and are accessible to graduate students with a background in engineering mathematics.
Many of the definitions, analyses, and designs in this book are accompanied by figures, examples and numerical simulations. MATLAB® and Simulink® simulations to assist the reader in understanding and further developing such features are available for download.
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Statistical Physics I
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Hybrid Integrator-Gain Systems
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Distributed Coordination Theory for Robot Teams
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Robust Control for Discrete-Time Markovian Jump Systems in the Finite-Time Domain
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Constrained Control of Uncertain, Time-Varying, Discrete-Time Systems
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Advances in H∞ Control Theory
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Security and Resilience of Control Systems
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Data-Driven, Nonparametric, Adaptive Control Theory
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Identification for Automotive Systems
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Networked Embedded Sensing and Control
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Optimization and Optimal Control in Automotive Systems
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Optimization Based Clearance of Flight Control Laws
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Fault Detection and Flight Data Measurement
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Analysis and Synthesis of Networked Control Systems
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Advanced Topics in Control and Estimation of State-Multiplicative Noisy Systems
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Automotive Model Predictive Control
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Robust Control and Linear Parameter Varying Approaches
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Modeling and Identification of Linear Parameter-Varying Systems
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Complexity, Analysis and Control of Singular Biological Systems
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Frequency Domain Criteria for Absolute Stability
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Search and Classification Using Multiple Autonomous Vehicles
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Advances in the Theory of Control, Signals and Systems with Physical Modeling
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Perspectives in Mathematical System Theory, Control, and Signal Processing
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Robot Motion and Control 2011
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Saturated Switching Systems
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Finite-Time Stability and Control
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Robustness in Identification and Control
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Realization Probabilities
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Advances in Filtering and Optimal Stochastic Control
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Robust Stability and Convexity
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Interactive Multi-Objective Programming as a Framework for Computer-Aided Control System Design
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Variational and Hamiltonian Control Systems
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Robot Motion Planning and Control
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Learning Automata and Stochastic Optimization
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Intelligent Control and Automation
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Realization Theory of Continuous-Time Dynamical Systems
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Modeling, Estimation, and Their Applications for Distributed Parameter Systems
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Optimal Feedback Control
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An Expert Systems Approach to Computer-Aided Design of Multivariable Systems
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Distributed Decision Making and Control
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Stochastic Models for Laser Propagation in Atmospheric Turbulence
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New Directions in Nonlinear Observer Design
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Safe Adaptive Control
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Recursive Nonlinear Estimation
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Detection of Abrupt Changes in Signals and Dynamical Systems
Minh Hoang Trinh received the B.S. degree in electrical engineering (2013) from Hanoi University of Science and Technology (HUST), Hanoi, Vietnam, the M.S. degree in mechatronics (2015), and the Ph.D. degree in mechanical engineering (2018) both from Gwangju Institute of Science and Technology (GIST), Gwangju, South Korea. In 2016, he was a visiting research student at Technion - Israel Institute of Technology, Haifa, Israel. From 2018 to 2019, he was as a postdoc researcher at GIST. Dr. Trinh worked as a lecturer at Hanoi University of Science and Technology, Hanoi (2019-2023), and a lecturer/researcher at the FPT University, Binh Dinh, Vietnam (2023-2024). His research interests include distributed control of multi-agent systems, graph rigidity theory, and matrix-weighted graphs.
Hyo-Sung Ahn is a professor at the Department of Mechanical and Robotics Engineering, Gwangju Institute of Science and Technology (GIST), Gwangju, Korea. He received the B.S degree in astronomy & atmospheric science from Yonsei University, Seoul, Korea, in 1998, and the Ph.D. degree in electrical engineering from Utah State University, Logan, in 2006. Since July 2007, he has been with the School of Mechatronics and School of Mechanical Engineering, GIST. Before joining GIST, he was a senior researcher with the Electronics and Telecommunications Research Institute, Daejeon, Korea. His research interests include formation control, distributed control, aerospace navigation and control, network localization, and learning control.
| SKU | Unavailable |
| ISBN 13 | 9783032030788 |
| ISBN 10 | 3032030781 |
| Title | Matrix-Weighted Graphs |
| Author | Minh Hoang Trinh |
| Series | Lecture Notes In Control And Information Sciences |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Springer Nature Switzerland AG |
| Year published | 2026-02-22 |
| Number of pages | 361 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |












































