Chassis Domain Oriented Dynamic Control For Autonomous Vehicles


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Chassis-Domain-Oriented Dynamic Control for Autonomous Vehicles


Chassis-Domain-Oriented Dynamic Control for Autonomous Vehicles

Author: Shuo Cheng

language: en

Publisher: CRC Press

Release Date: 2025-09-03


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Over seven detail-rich chapters, this book comprehensively describes autonomous vehicle chassis modeling and control, chassis domain dynamic control, the estimation of essential dynamic states, research on motion planning, the development of chassis coordinated control, and related topics. This book first summarizes vehicle dynamic modeling and control and provides the background and related topics for chassis domain dynamic control. It then presents the motivations of chassis domain control and introduces its conceptual framework. The book then focuses on the identification of tire–road interactions, which contain lateral, longitudinal, and vertical tire forces, before then discussing the estimation of essential dynamic states, which represent vehicle handling stability status, and the observation of road surface coefficient. The quantitative evaluation of vehicle chassis domain performance is then provided, with the rigorous definition and design of a comprehensive metric for assessing chassis dynamic performance. Next, the book instructs readers on the chassis-domain dynamic-aware motion planning for autonomous vehicles and the multi-objective multi-subsystem coordinated control. Finally, the authors present their conclusions and future recommendations for the advanced control of autonomous vehicles. The content and structure of this book will enable readers to address the high complexity and unpredictability of traffic conditions, along with the strong nonlinearity of vehicle dynamics during maneuvers, to facilitate the safe and coordinated operations of chassis subsystems. This will further the advancement of autonomous vehicles as the automobile industry transitions into the intelligent age. This is a vital guide for readers from various expertise backgrounds. Advanced undergraduate and postgraduate students who study vehicle engineering will benefit from the descriptions of theoretical foundations and practical methodologies. Engineers and researchers will also benefit from the unique insights into modeling and control technologies for autonomous vehicles.

Control Applications of Vehicle Dynamics


Control Applications of Vehicle Dynamics

Author: Jingsheng Yu

language: en

Publisher: CRC Press

Release Date: 2021-12-24


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This book presents essential knowledge of car vehicle dynamics and control theory with NI LabVIEW software product application, resulting in a practical yet highly technical guide for designing advanced vehicle dynamics and vehicle system controllers. Presenting a clear overview of fundamental vehicle dynamics and vehicle system mathematical models, the book covers linear and non-linear design of model based controls such as wheel slip control, vehicle speed control, path following control, vehicle stability and rollover control, stabilization of vehicle-trailer system. Specific applications to autonomous vehicles are described among the methods. It details the practical applications of Kalman-Bucy filtering and the observer design for sensor signal estimation, alongside lateral vehicle dynamics and vehicle rollover dynamics. The book also discusses high level controllers, alongside a clear explanation of basic control principles for regenerative braking in both electric and hybrid vehicles, and wheel torque vectoring systems. Concrete LabVIEW simulation examples of how the models and controls are used in representative applications, along with software algorithms and LabVIEW block diagrams are illustrated. It will be of interest to engineering students, automotive engineering students and automotive engineers and researchers.

Advanced Vehicle Dynamics


Advanced Vehicle Dynamics

Author: Mr. Rohit Manglik

language: en

Publisher: EduGorilla Publication

Release Date: 2023-06-23


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This book offers a detailed exploration of advanced vehicle dynamics, focusing on key concepts, methodologies, and practical implementations relevant to modern engineering and technology practices.