Search for dissertations about: "suspension system vehicle dynamics"
Showing result 1 - 5 of 13 swedish dissertations containing the words suspension system vehicle dynamics.
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1. Advances In Heavy Vehicle Dynamics with Focus on Engine Mounts and Individual Front Suspension
Abstract : The main objective of the research presented in this thesis is to enhance driver comfort and handling of a heavy truck that in turn leads to better vehicle safety and stability. The focus has been put on studying two suspension systems of the truck, engine and front axle suspensions, due to their significant impact on the dynamic performance of the vehicle. READ MORE
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2. Multi-objective optimization of railway bogie suspension damping
Abstract : In this thesis multi-objective optimization is used to find Pareto fronts showing the set of optimized damping parameters of primary and secondary bogie suspensions. Special interests are put on requirements to enhance safety and comfort of a railway vehicle. READ MORE
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3. Multiobjective Optimisation and Active Control of Bogie Suspension
Abstract : Railways provide fast, safe, clean, and cheap transportation service. The cost efficiency inrailway operations can be scrutinized from different perspectives. READ MORE
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4. Low-cost control of discontinuous systems including impacts and friction
Abstract : For a successful design of an engineering system it is essential to pay careful attention to its dynamic response. This is particularly true, in the case of nonlinear systems, since they can exhibit very complex dynamic behaviour, including multiple co-existing stable solutions and chaotic motions, characterized by large sensitivity to initial conditions. READ MORE
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5. Mechatronic aspects of an innovative two-axle railway vehicle
Abstract : Within the Shift2Rail research program the goals for a sustainable growth of the railway sector are set. Among these are substantial reduction of Life Cycle Costs, improved reliability and energy efficiency, the reductionof noise emissions, and the achievement of full interoperability of the rolling stock. READ MORE