<?xml version="1.0" encoding="ISO-8859-1" standalone="yes" ?>
<document>
<title>Power Electronics and Drive Systems Engineering</title>
<cid>E2602</cid>
<sapsubmodule>P211-0103, P211-0104</sapsubmodule>
<bkey>ei</bkey>
<ctypes>
<hours>2</hours>
<type>V</type>
<hours>1</hours>
<type>U</type>
<hours>1</hours>
<type>P</type>
</ctypes>
<cp>5</cp>
<semester>6</semester>
<mandatory>yes</mandatory>
<language>German</language>
<exam>Written exam, practical exam with composition (3 lab experiments, ungraded)</exam>
<curriculum>
<curriculum_entry>
<cid>EE1601</cid>
<branch>Energy system technology / Renewable energies</branch>
<semester>6</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
<curriculum_entry>
<cid>E2602</cid>
<branch>Electrical Engineering and Information Technology</branch>
<semester>6</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
</curriculum>
<workload>
60 class hours (= 45 clock hours) over a 15-week period.The total student study time is 150 hours (equivalent to 5 ECTS credits).There are therefore 105 hours available for class preparation and follow-up work and exam preparation.</workload>
<prerequisites>
</prerequisites>
<prerequisitesfor>
</prerequisitesfor>
<convenor>Prof. Dr.-Ing. Stefan Winternheimer</convenor>
<convenor-person-key>swi</convenor-person-key>
<lecturers>
<lecturer>Prof. Dr.-Ing. Stefan Winternheimer</lecturer>
<lecturer-person-key>swi</lecturer-person-key>
</lecturers>
<objectives>After successfully completing this course, students will have detailed knowledge about the operating behavior of DC machines and the control of DC drives. They will be able to convert a control problem into a block diagram, develop a functional control concept and design the required controllers independently. Students will have an overview of common inverter circuits and the necessary modulation methods. They will be able to develop the block diagram of a single-phase inverter.</objectives>
<content>1. DC drives 1.1 The DC machine as a controlled system 1.2 Fundamentals of control engineering 1.3 Speed-controlled DC machine 1.4 DC machine with variable excitation flux 2 Power inverter 2.1 The single-phase inverter 2.2 The three-phase inverter 2.3 The single-phase inverter as a controlled system 3 Lab 3.1 Speed-controlled DC machine 3.2 Asynchronous machine with frequency converter 3.3 Grid-connected PV system</content>
<media>Transparencies, blackboard, lecture notes and electronic handouts</media>
<literature>Leonhard, Werner: Control of Electrical Drives, Springer, Berlin, Heidelberg, 1990, Corr. 2. print Mohan, Ned; Undeland, Tore M.; Robbins, William P.: Power Electronics, Wiley, (latest edition) Riefenstahl, Ulrich: Elektrische Antriebstechnik, B.G. Teubner, (latest edition) Schröder, Dierk: Elektrische Antriebe - Regelung von Antriebssystemen, Springer, Berlin, Heidelberg, (latest edition)</literature>
<offered>
</offered>
<moduldb-query>Mon Mar 16 07:21:31 CET 2026, CKEY=e3E2602, BKEY=ei, CID=[?], LANGUAGE=en, DATE=16.03.2026</moduldb-query>
</document>
