
Advanced Seat Suspension Control System Design for Heavy Duty Vehicles
Series: Emerging Methodologies and Applications in Modelling, Identification and Control;
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Product details:
- Publisher Academic Press
- Date of Publication 23 May 2020
- ISBN 9780128196014
- Binding Paperback
- No. of pages314 pages
- Size 229x152 mm
- Weight 500 g
- Language English
- Illustrations Approx. 100 illustrations 114
Categories
Long description:
Advanced Seat Suspension Control System Design for Heavy Duty Vehicles provides systematic knowledge of the advanced seat suspension design and control for heavy duty vehicles.
Nowadays, people are paying more and more attention to ride comfort and the health of drivers and passengers. This is especially for heavy duty vehicles, where drivers/operators are exposed to much severer vibrations than those in passenger vehicles due to a harsh working environment, operating conditions, and long hour driving, etc. Seat suspension systems can effectively help to suppress the high magnitude vibration transmitted to drivers with relatively simple structure and low cost, and hence are widely adopted in heavy duty vehicles.
This book helps researchers and engineers to have a comprehensive understanding of the seat suspension system and to conduct in-depth studies on seat suspension design and control; this book covers a wide range of perspectives about seat suspension design and control methods.
- Describes the variable damping, variable stiffness, and, especially, variable inertance seat suspensions
- Provides the advanced and comprehensive knowledge about semi-active vibration control
- Introduces the multiple-DOF seat suspension
- Includes the innovative hybrid seat suspension and nonlinear seat suspension
- All the introduced designs have been prototyped and experimentally validated
- Provides Matlab Simulation programming codes
Table of Contents:
1. Introduction
2. Controllable electromagnetic damper-based seat suspension
3. Controllable magnetorheological fluid damper-based seat suspension
4. Self-powered MR seat suspension
5. Variable equivalent stiffness seat suspension
6. Variable equivalent inertance seat suspension
7. Single-DOF active seat suspension
8. Multiple-DOF active seat suspension
9. Active seat suspension control algorithm
10. Hybrid active and semi-active seat suspension
11. Nonlinear stiffness seat suspension
Appendix A. Vibration profile generation for seat suspension
Appendix B. Simulation of seat suspension control
Appendix C. Experimental setup
Index
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