Module codes

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Scientific Presentation in German [S112]
Presentation of a scientific topic in german


Scientific presentation in english [S113]
Presentation of a scientific topic in english


Technical Software Project [E2G635]

Recapitulation of OOP-Basic; Design of memberfunctions; Use of Templates; Standard Template Library; Design Patterns; Software Project


Complex Digital Architectures [W101]
VHDL introduction, Programmable logic devices, VHDL synthesis of combinational and sequential circuits, VHDL description of I/O interfaces, SOPC development (System on a Programmable Chip), NIOS II processor hardware/software design, Practical work with evaluation boards


Communication Systems 1 [E2G306]
Fundamentals (services, protocols, layer model, mediation principles, QoS), media access control and link layer (IEEE 802.X, HDLC). Network layer: IP addressing and routing protocols. Introduction to the transport layer. Transmission techniques. Laboratory: Experiments / exercises on network configuration, routing and protocol analysis in local area networks and the Internet, setting up small wireless and mesh networks.


Communication Systems 2 [E2G308]
TCP, protocol design and development methodology, information security, traffic theory, streaming protocols. Laboratory: Experiments concerning selected protocols.


Power Electronics [E2G402]
Electrical power, power electronic components, line commutated converters and inverters, load commutated inverters, self-commutated converters and inverters, control circuits for thyristors, switching power supplies.


Process Control [E2G408]
Process: sensors, actuators, information transmission: field bus systems, computer networks, remote control, control center: hardware and software of PMC-Systems.


Power Electronics for Renewable Power Systems [E2G807]
electrical power system as interface for renewable energies, practical knowledge of power electronics, power electronics in conventional and renewable power systems, requirements on grid integration for renewable energies, control methods and controller design for power electronics, inverter modules for photovoltaic systems, battery inverters, HVDC transmission systems, FACTS in power systems


Advanced Mathematics [P100]
vector analysis: scalar and vector fields, gradient, conservative vector fields, curl and divergence, surface integrals, theorems of Green, Stokes and Gauß, numerical methods: systems of non-linear equations, numerical treatment of differential equations, probability theory: discrete and continuous distributions, statistical tests: χ2-test


Mathematics 1 [E2B104]
Logic, sets and numbers. Vector and matrix calculus, functions, differential and integral calculus of one variable. Sequences, series, Taylor and power series.


Mathematics 2 [E2B105]
Differential and integral calculus of several variables. Linear ordinary differential equations, transformations.


Theory of Electric and Magnetic Fields [P101]
Basics (grad, div, rot), Maxwell's Equations, stationary and static fields (electro static field, magneto static field, stationary current field), quasistationary electromagnetic fields, electromagnetic waves


Microcomputer Systems [E2G414]
Integrated development systems, development of small application projects for sensors and actuators with timer / counters, analogue to digital converters, pulse-width modulation, parallel and serial bus interfaces.


Modelling of Discret Event Systems [M222]
Description, analysis and simulation of systems by petri nets and comparable techniques.