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  1. The chapter continues with a detailed analysis of the suspension system componentstyres, linkages, springs and dampers—the latter including active damping. It aims to extend the understanding of load transfer when body roll is considered along with the effects of sprung and unsprung masses.

  2. 1 Ιαν 2021 · This literature review targets the identified gap, and provides categorisation, description and critical analysis of preview-based suspension control strategies, including consideration of relevant dynamic models for control design, system constraints, computational power demand, performance indicators, and achieved results.

  3. Suspensions, Functions, and Main Components. In: Vehicle Suspension System Technology and Design. Synthesis Lectures on Advances in Automotive Technology. Springer, Cham. https://doi.org/10.1007/978-3-031-01494-9_1.

  4. 13 Φεβ 2023 · The suspension system contains three major parts: a structure that supports the vehicle’s weight and determines suspension geometry, a spring that converts kinematic energy to potential energy or vice versa, and a shock absorber that is a mechanical device designed to dissipate kinetic energy.

  5. 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.

  6. 11 Μαρ 2019 · This chapter contains sections titled: Introduction. Types of Suspension System. Design Analysis of Suspension System.

  7. 3 Ιουλ 2024 · The explicit relationship between system output spectrum and model parameters is derived by using the nonlinear frequency domain analysis method, and the characteristic parameters of interest can therefore be analyzed directly. The optimal nonlinear stiffness and damping characteristics of vehicle suspension systems can then be achieved.