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Vehicle Suspension Systems and Electromagnetic Dampers (Paperback, Softcover reprint of the original 1st ed. 2018): Saad... Vehicle Suspension Systems and Electromagnetic Dampers (Paperback, Softcover reprint of the original 1st ed. 2018)
Saad Kashem, Romesh Nagarajah, Mehran Ektesabi
R3,199 Discovery Miles 31 990 Ships in 10 - 15 working days

This book describes the development of a new analytical, full-vehicle model with nine degrees of freedom, which uses the new modified skyhook strategy (SKDT) to control the full-vehicle vibration problem. The book addresses the incorporation of road bank angle to create a zero steady-state torque requirement when designing the direct tilt control and the dynamic model of the full car model. It also highlights the potential of the SKDT suspension system to improve cornering performance and paves the way for future work on the vehicle's integrated chassis control system. Active tilting technology to improve vehicle cornering is the focus of numerous ongoing research projects, but these don't consider the effect of road bank angle in the control system design or in the dynamic model of the tilting standard passenger vehicles. The non-incorporation of road bank angle creates a non-zero steady state torque requirement.

Vehicle Suspension Systems and Electromagnetic Dampers (Hardcover, 1st ed. 2018): Saad Kashem, Romesh Nagarajah, Mehran Ektesabi Vehicle Suspension Systems and Electromagnetic Dampers (Hardcover, 1st ed. 2018)
Saad Kashem, Romesh Nagarajah, Mehran Ektesabi
R5,313 Discovery Miles 53 130 Ships in 10 - 15 working days

This book describes the development of a new analytical, full-vehicle model with nine degrees of freedom, which uses the new modified skyhook strategy (SKDT) to control the full-vehicle vibration problem. The book addresses the incorporation of road bank angle to create a zero steady-state torque requirement when designing the direct tilt control and the dynamic model of the full car model. It also highlights the potential of the SKDT suspension system to improve cornering performance and paves the way for future work on the vehicle's integrated chassis control system. Active tilting technology to improve vehicle cornering is the focus of numerous ongoing research projects, but these don't consider the effect of road bank angle in the control system design or in the dynamic model of the tilting standard passenger vehicles. The non-incorporation of road bank angle creates a non-zero steady state torque requirement.

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