In particular, more emphasis is put on the description of single fields by adding the flow field. Corresponding to these field, the book is augmented with the new chapter about coupled flow-structural mechanical systems.
Numerical Simulation of Mechatronic Sensors and Actuators | SpringerLink
Thereby, the discussion of computational aeroacoustics is extended towards perturbation approaches, which allows a decomposition of flow and acoustic quantities within the flow region. Last but not least, applications are updated and restructured so that the book meets modern demands.
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Powered by Koha. Log in to your account. Research is performed on the following topics:. For some detailed description of research projects see our website. Typical examples of real world applications are: Design of electrodynamic loudspeakers Design of electromagnetic and piezoelectric drives New injection actuators for common-rail diesel engines Noise reduction of electric power transformers Design of ultrasound array antennas for medical imaging and therapy Design of SAW-filters for mobile phones Design of micro-machined CMOS microphones The TAF Computational Mechatronics aims to combine the three requisite disciplines: engineering, computer science and mathematics.
Numerical Simulation of Mechatronic Sensors and Actuators
How is the program designed, what will be taught? CAE of Sensors and Actuators This lecture introduces numerical calculation schemes for computer simulation of electromechanical sensors and actuators using practical examples.
In a first step, the basic concepts of the finite element method will be explained. The main emphasis will be the physical modeling of electromagnetic, mechanical, acoustic and thermal fields. In the exercises, students will learn step by step all the necessary tasks for successfullyperforming numerical simulations of electromechanical sensors and actuators.
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Numerical Simulation of Electromechanical Transducers This lecture presents the current state of numerical simulation for coupled field problems, building on the basics from the previous course. These methods are used in the modern design process of mechatronic sensors and actuators.
The main topics will concern the efficient numerical treatment of coupled field problems, including the difficulties of nonlinearity. For numerical discretization we will use the finite element FE method.
- Numerical Simulation of Mechatronic Sensors and Actuators | Emerald Insight.
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Through exercises, students will be trained in the correct simulation of industrial sensors and actuators. What research is done in Erlangen? Research is performed on the following topics: 1.
Electrostatic sensors and actuators: Applications: Capacitive acceleration sensor airbag sensor CMOS microphone mobile phones Micro-machined gyro sensor stability control of automobiles Ultrasound array antennas medical diagnostics 2. Magnetomechanic sensors and actuators: Applications: Loudspeaker e. Who is in charge of this TAF? PD Dr. Spara som favorit.
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Skickas inom vardagar. Like the previous editions also the third edition of this book combines the detailed physical modeling of mechatronic systems and their precise numerical simulation using the Finite Element FE method. Thereby, the basic chapter concerning the Finite Element FE method is enhanced, provides now also a description of higher order finite elements both for nodal and edge finite elements and a detailed discussion of non-conforming mesh techniques.
The author enhances and improves many discussions on principles and methods.