Multi-Agent Systems: Platoon Control and Non-Fragile Quantized Consensus, Xiang-Gui Guo (University of Science and Technology Beijing, China.),Jian-Liang Wang (Nanyang Technological University, Singapore),Fang Liao (National University of Singapore, Singapore),Rodney Swee Huat Teo (National University of Singapore, Singapore) (9781032338316) — Readings Books
Multi-Agent Systems: Platoon Control and Non-Fragile Quantized Consensus
Paperback

Multi-Agent Systems: Platoon Control and Non-Fragile Quantized Consensus

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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.

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Format
Paperback
Publisher
Taylor & Francis Ltd
Country
United Kingdom
Date
14 June 2022
Pages
236
ISBN
9781032338316

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.

Read More
Format
Paperback
Publisher
Taylor & Francis Ltd
Country
United Kingdom
Date
14 June 2022
Pages
236
ISBN
9781032338316