Handbook of Vehicle Suspension Control Systems (Control, Robotics and Sensors) 🔍
Liu, Honghai; Gao, Huijun; Li, Ping The Institution of Engineering and Technology, IET control engineering series, 92, London, 2013
英语 [en] · PDF · 50.3MB · 2013 · 📘 非小说类图书 · 🚀/lgli/lgrs/nexusstc/zlib · Save
描述
Handbook of Vehicle Suspension Control Systems surveys the state-of-the-art in advanced suspension control theory and applications.
Topics covered include:
An overview of intelligent vehicle suspension control systems
Intelligence-based vehicle active suspension adaptive control systems
Robust active control of an integrated suspension system
An interval type-II fuzzy controller for vehicle active suspension systems
Active control for actuator uncertain half-car suspension systems
Active suspension control with finite frequency approach
Fault-tolerant control for uncertain vehicle suspension systems via fuzzy control approach
H-infinity fuzzy control of suspension systems with actuator saturation
Design of sliding mode controllers for semi-active suspension systems with magnetorheological dampers
Joint design of controller and parameters for active vehicle suspension
System approach to vehicle suspension system control in CAE environment
An LMI approach to vibration control of vehicle engine-body systems with time delay
Frequency domain analysis and design of nonlinear vehicle suspension systems
With contributions from an international selection of researchers, Handbook of Vehicle Suspension Control Systems will find a place on the bookshelves of academic researchers and industrial practitioners in control engineering, particularly those working on applications for the automotive industry.
备用文件名
lgrsnf/G:\!genesis\1\!ready\knovel\Handbook of Vehicle Suspension Control Systems.pdf
备用文件名
nexusstc/Handbook of Vehicle Suspension Control Systems/24a7cbeeefdcbe6588bf9fc225a84ca6.pdf
备用文件名
zlib/no-category/Liu, Honghai; Gao, Huijun; Li, Ping/Handbook of Vehicle Suspension Control Systems_2353181.pdf
备选标题
Practical Robotics and Mechatronics Marine, space and medical applications
备选作者
Honghai Liu; Huijun Gao; Ping Li; Institution of Engineering and Technology
备选作者
Liu, Honghai (Professor of Intelligent Systems), Huijun Gao, Ping Li
备选作者
edited by Honghai Liu, Huijun Gao and Ping Li
备用出版商
Elsevier
备用版本
Control engineering series -- 92, London, England, 2013
备用版本
Institution of Engineering & Technology, London, 2013
备用版本
Control engineering series, Online-ausg, London, 2013
备用版本
IEE control engineering series, v. 92, London, 2013
备用版本
Control, Robotics et Sensors, Stevenage, 2013
备用版本
United Kingdom and Ireland, United Kingdom
备用版本
United States, United States of America
备用版本
2, 2013-11-22
备用版本
2014
元数据中的注释
6762
元数据中的注释
lg1184730
元数据中的注释
{"isbns":["1628702141","1849196338","1849196346","9781628702149","9781849196338","9781849196345"],"last_page":423,"publisher":"Institution of Engineering and Technology","series":"IET Control Engineering Series 92"}
元数据中的注释
Includes bibliographical references and index.
备用描述
<p>Handbook of Vehicle Suspension Control Systems surveys the state-of-the-art in advanced suspension control theory and applications. Topics covered include an overview of intelligent vehicle suspension control systems; intelligence-based vehicle active suspension adaptive control systems; robust active control of an integrated suspension system; an interval type-II fuzzy controller for vehicle active suspension systems; active control for actuator uncertain half-car suspension systems; active suspension control with finite frequency approach; fault-tolerant control for uncertain vehicle suspension systems via fuzzy control approach; h-infinity fuzzy control of suspension systems with actuator saturation; design of sliding mode controllers for semi-active suspension systems with magnetorheological dampers; joint design of controller and parameters for active vehicle suspension; an LMI approach to vibration control of vehicle engine-body systems with time delay; and frequency domain analysis and design of nonlinear vehicle suspension systems.<br></p><p>With contributions from an international selection of researchers, Handbook of Vehicle Suspension Control Systems will find a place on the bookshelves of academic researchers and industrial practitioners in control engineering, particularly those working on applications for the automotive industry.<br></p>
备用描述
Surveying advances in suspension control theory and applications, this book covers: an overview of intelligent vehicle suspension control systems; intelligence-based vehicle active suspension adaptive control systems; robust active control of an integrated suspension system; an interval type-II fuzzy controller for vehicle active suspension systems; active control for actuator uncertain half-car suspension systems; active suspension control with finite frequency approach; fault-tolerant control for uncertain vehicle suspension systems via fuzzy control approach; H-infinity fuzzy control of suspension systems with actuator saturation; design of sliding mode controllers for semi-active suspension systems with magnetorheological dampers; joint design of controller and parameters for active vehicle suspension; system approach to vehicle suspension system control in CAE environment; LMI approach to vibration control of vehicle engine-body systems with time delay; and frequency domain analysis and design of nonlinear vehicle suspension systems. -- Edited summary from book
备用描述
This book presents recent control theory and applications for vehicle suspension systems. From the systematic point of view, a vehicle control system is composed of key components such as modeling, sensing, controller, and actuator. It is not our intention to cover all the technical details of recent control-related contributions in the context of vehicle suspensions, but priority has been given to recently reported novel control methods and key challenges in the past decades. This book consists of 13 self-contained chapters covering recent theoretical developments and applications in active suspension systems
备用描述
This book surveys the state-of-the-art in advanced suspension control theory and applications. With contributions from an international selection of researchers, this book will find a place on the bookshelves of academic researchers and industrial practitioners in control engineering, particularly those working on applications for the automotive industry.
开源日期
2014-06-29
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