
Multi-Agent Systems
Platoon Control and Non-Fragile Quantized Consensus
CRC Press
1st Edition
Published on 14. June 2022
Book
Paperback/Softback
236 pages
978-1-032-33831-6 (ISBN)
Description
Multi-Agent Systems: Platoon Control and Non-Fragile Quantized Consensus aims to present recent research results in designing platoon control and non-fragile quantized consensus for multi-agent systems. The main feature of this book is that distributed adaptive sliding mode control (SMC) algorithms are proposed to guarantee strong string stability based on modified constant time headway (MCTH) policy. The MCTH policy is used to remove the unrealistic assumption in the most existing literature that initial spacing, velocity and acceleration errors are zero. This monograph investigates the platoon control issue by combining SMC technique with neural network and fuzzy logic system approximation methods.
More details
Series
Language
English
Place of publication
London
United Kingdom
Publishing group
Taylor & Francis Ltd
Target group
Professional and scholarly
Illustrations
64 s/w Abbildungen
64 Illustrations, black and white
Dimensions
Height: 234 mm
Width: 156 mm
Thickness: 13 mm
Weight
368 gr
ISBN-13
978-1-032-33831-6 (9781032338316)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Xiang-Gui Guo | Jian-Liang Wang | Fang Liao
Multi-Agent Systems
Platoon Control and Non-Fragile Quantized Consensus
Book
06/2019
1st Edition
CRC Press
€251.90
Shipment within 15-20 days

Xiang-Gui Guo | Jian-Liang Wang | Fang Liao
Multi-Agent Systems
Platoon Control and Non-Fragile Quantized Consensus
E-Book
06/2019
1st Edition
CRC Press
€92.49
Available for download

Xiang-Gui Guo | Jian-Liang Wang | Fang Liao
Multi-Agent Systems
Platoon Control and Non-Fragile Quantized Consensus
E-Book
06/2019
1st Edition
CRC Press
€92.49
Available for download
Persons
Xiang-Gui Guo is an Associate Professor with the School of Automation and Electrical Engineering, University of Science and Technology Beijing, Beijing, China.
Jian-Liang Wang is an Associate Professor with the School of Electrical and Electronic Engineering at Nanyang Technological University, Singapore.
Fang Liao is a Research Scientist with Temasek Laboratories, National University of Singapore, Singapore. Rodney Swee Huat Teo is a Principal Member of Technical Staff of the DSO National Laboratories, Singapore, and a Senior Research Scientist with Temasek Laboratories, National University of Singapore.
Jian-Liang Wang is an Associate Professor with the School of Electrical and Electronic Engineering at Nanyang Technological University, Singapore.
Fang Liao is a Research Scientist with Temasek Laboratories, National University of Singapore, Singapore. Rodney Swee Huat Teo is a Principal Member of Technical Staff of the DSO National Laboratories, Singapore, and a Senior Research Scientist with Temasek Laboratories, National University of Singapore.
Author
University of Science and Technology Beijing, China.
Nanyang Technological University, Singapore
National University of Singapore, Singapore
National University of Singapore, Singapore
Content
Introduction. Preliminaries. String Stability of Vehicle Platoons with External Disturbances. String Stability of Vehicle Platoons with Nonlinear Acceleration Uncertainties. CNN-Based Adaptive Control for Vehicle Platoon with Input Saturation. Adaptive Fuzzy Fault-Tolerant Control for Multiple High-Speed Trains. Collision Avoidance for Vehicle Platoon with Input Deadzone and Spacing Constraints. Neuro-Adaptive Quantized PID-Based SMC of Vehicular Platoon with Deadzone. Low-Complexity Control of Vehicular Platoon with Asymmetric Saturation. Non-Fragile Quantized Consensus for Multi-Agent Systems Based On Incidence Matrix. Non-Fragile H8 Consensus for Multi-Agent Systems With Interval-Bounded Variations. Quantized H8 Consensus for Multi-Agent Systems With Quantization Mismatch. Bibliography. Index