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Die Teilnehmer lernen dabei: A minimum of 40 credits must be obtained from specialization courses during the Master’s Programme.
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Mitsvhrift theoretical part covers the basic techniques and procedures for characterization, modeling and built-in reliability of modern power semiconductor devices with special attention to MOS and IGBT.
Optimized design of the EMI filter. Discrete-Time and Statistical Signal Processing. State space representation modal description, controllability, control canonical form, observer canonical formstate feedback, pole placement – choice of poles. Grundlagen der Eisenbahnfahrzeuge und ihr Zusammenspiel mit der Bahninfrastruktur: Design of control systems for single input – single output and multivariable systems.
Die Auswahl der Versuche wird mit den Betreuern abgestimmt.
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These specialization courses are particularly recommended for the area of “Energy and Power Electronics”, but you are free to choose courses from any other field in agreement with your tutor. Portfolio und Risiko Management 3. PDF documents, mitschrkft “Learning materials” for registered students only. Tuesday Practical exercises will illustrate some topics, e. Furthermore, schematic power devices will be simulated by the students with advanced TCAD tools and circuit simulators. Knowledge of process automation and its application in industry and power generation.
Isolationstechnik Die Vorlesungen Hochspannungstechnik I: PID control, Ziegler – Nichols tuning. Wasserkraft und Handel 4. Modeling, Characterization and Reliability of Power Semiconductors. They include failure physics, dedicated failure analysis techniques, accelerated testing, defect screening, mirschrift lifetime modeling.
Der 3-Punkt-Pulsumrichters mit seinen Schalt- und Transferfunktionen wird vertieft betrachtet. The individual study plan is subject to the tutor’s approval. Die Vorlesungen Hochspannungstechnik I: The class is intended to provide a comprehensive overview of the theory of linear dynamical systems, stability analysis, and their use in control and estimation.
Finally, procedures are methods are presented to implement efficient built-in reliability programs targeted on power semiconductors.
Terminkontrakte EEX Futures 3. Risk Management 2 PaR 3. Prentice Hall, New Jersey, Beurteilen von Strategien zur Absicherung des Marktpreisrisikos. Slides will be available as. In the second part of the course, we review the basics of probability theory and discrete-time stochastic processes.
The experiments may be chosen in agreement with the supervising tutor. This knowledge is intended to provide the future engineer with the theoretical background and tools for the design of dependable power devices and systems. The first part of the course provides an overview about the development of international markets, the expected challenges and the players in the market.
Energy and Power Electronics The core courses and specialization courses below are a selection for students who wish to specialize in the area of “Energy and Power Electronics”, see https: Basics of the switching behavior, gate drive and snubber circuits of power semiconductors are discussed.
Laplace transform, system response for first and second order systems – effect of additional poles and zeros. Optionen 1 — Grundlagen 4. Furthermore, the course should convey knowledge on the switching frequency related losses of power semiconductors and inductive power components and introduce the concept of space vector calculus which provides a basis miyschrift the comprehensive discussion of three-phase PWM converters systems in the lecture Power Electronic Systems II.
The lecture will be held in three blocks each of them on a Saturday. Introduction to process automation and its application in process industry and power generation. An Introduction for Scientists and Engineers. During the laboratory activities, selections of the experimental techniques presented mitschrify the lecture are demonstrated on the base of realistic examples.
In the first part of the course, we deepen our understanding of discrete-time linear filters. The starting part on technology provides an overview on the main device families and includes a review of the most relevant application-oriented aspects of the device physics, thermal management, and packaging.
Electromagnetic Compatibility – practical lab course Credits: Students should be able to apply the fundamental results in mitschrif system theory to analyze and control linear dynamical systems.