
Vehicle Propulsion Systems (eBook, PDF)
Introduction to Modeling and Optimization
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This fascinating work gives an introduction to the modeling and optimization problems typically encountered when designing new propulsion systems for passenger cars.Its focus is on the control-oriented mathematical description of the physical processes, as well as on the model-based optimization of the system structure.Naturally, the supervisory control algorithms of such systems are also covered.The text evolved from a lecture series at ETH Zurich.Fundamentally, Guzzella here provides an analysis of the longitudinal behavior of road vehicles.His main emphasis is on the analysis and minimizati...
This fascinating work gives an introduction to the modeling and optimization problems typically encountered when designing new propulsion systems for passenger cars.
Its focus is on the control-oriented mathematical description of the physical processes, as well as on the model-based optimization of the system structure.
Naturally, the supervisory control algorithms of such systems are also covered.
The text evolved from a lecture series at ETH Zurich.
Fundamentally, Guzzella here provides an analysis of the longitudinal behavior of road vehicles.
His main emphasis is on the analysis and minimization of the fuel and energy consumption.
Most approaches to this problem enhance the complexity of the vehicle system by adding components such as electrical motors or storage devices.
Such a complex system can only be designed by means of mathematical models, and that is where this work steps in with solutions.
Its focus is on the control-oriented mathematical description of the physical processes, as well as on the model-based optimization of the system structure.
Naturally, the supervisory control algorithms of such systems are also covered.
The text evolved from a lecture series at ETH Zurich.
Fundamentally, Guzzella here provides an analysis of the longitudinal behavior of road vehicles.
His main emphasis is on the analysis and minimization of the fuel and energy consumption.
Most approaches to this problem enhance the complexity of the vehicle system by adding components such as electrical motors or storage devices.
Such a complex system can only be designed by means of mathematical models, and that is where this work steps in with solutions.
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