Skip to main content
Skip to main content

Department of Electrical Engineering and Computer Science


Electrical Engineering and Computer Science—a powerful duo! Few other scientific disciplines, like electrical engineering and computer science, collectively represent the infrastructure that serves as the lifeblood of modern industrial societies. 
From power plants to microprocessors, from high-speed trains to compact cars, from rolling mill controls to cell phones—everywhere, hardware and software, electrical engineering and computer science ensure the smooth, safe, and convenient use of technology.

The Department of Electrical Engineering and Computer Science at the University of Siegen is one of the few institutions in Germany that combines research and teaching in electrical engineering and computer science under one roof.

Imagebild ET-I
Jubelnde AbsolventInnen
Campus Life
+ 4 more

Faculty IV's 2026 Annual Celebration

Natural Sciences and Technology School Annual Celebration: Sunshine, a Red Carpet, and Lots of Applause for Up-and-Coming Scholars

The School of Science and Technology at the University of Siegen celebrated its graduates and newly minted Ph.D. recipients in a festive setting. At the annual celebration in the Apollo Theater, the focus was on the achievements of the next generation of scientists—as well as awards for outstanding research and dedicated teaching.

The conditions could hardly have been better: Under bright sunshine and walking across a red carpet, guests streamed into the Apollo Theater. The anticipation for the highlight of the day—the ceremonial presentation of diplomas—was palpable. Even before the event began, many graduates took advantage of the photo backdrop featuring the sculpture of the faculty logo to take commemorative photos in their academic gowns and doctoral caps.

 

Studierendengruppe
Study
+ 1 more

AI and Children's Books: Two Ideas from Siegen Receive Funding

The University of Siegen has received funding for two innovative teaching projects under the “Freiraum 2026” program. The projects focus on the reflective use of artificial intelligence and new ways to make knowledge and science understandable to children.

Prof. Ramesh Rayudu

Guest Lecture by Prof. Ramesh Rayudu of Victoria University of Wellington (New Zealand)

Guest lecture by Prof. Ramesh Rayudu titled: “Do We Need to Change the Way We Transmit Electricity in Our Countries? A Look at How Power Electronics Is Taking Over Our Infrastructure”

Pels Logo
Research

IAS is hosting an IEEE PELS webinar on June 25, 2026

Based on the paper “RHINO-MAG: Exploring Data-Driven Recursive Magnetic Material Models” from the IEEE PELS MagNet Challenge 2025, we will present our modeling methodology and the empirical results we have obtained during a webinar on June 25, 2026. 

Ehrenurkunde für Dr. Michael Wahl

VDE Certificate of Honor for Dr. Michael Wahl

For many years, Dr. Michael Wahl has helped shape the professional dialogue between academia and industry. He has now been awarded the VDE Certificate of Honor for his extraordinary dedication.

Bild Prof. Dr.-Ing. Dietmar Ehrhardt
General Public

Obituary for Prof. Dietmar Ehrhardt, Ph.D. (Eng.)

The University of Siegen mourns the loss of Prof. Dietmar Erhardt, Ph.D. (Eng.).

Gruppenfoto Siegerteam
Study

Team from Siegen and Paderborn wins international competition in power electronics

A joint team from the Universities of Siegen and Paderborn has won a research competition in the field of power electronics. They finished ahead of top international universities.

Forschung auf Weltklasseniveau im INCYTE.
Baumaßnahmen
+ 1 more

Starting signal for a new era of excellent research

The INCYTE research center was officially opened at the University of Siegen in the presence of Ina Brandes, Minister for Culture and Science of the State of North Rhine-Westphalia. The new high-tech center strengthens cutting-edge research in Siegen and the whole of North Rhine-Westphalia.

Das Lehrlabor hat eine neue technische Ausstattung bekommen.
General Public

New teaching laboratory strengthens engineering training in Siegen

The new electrical engineering teaching laboratory for networked automation systems has been opened at the University of Siegen. The rooms were extensively renovated and brought up to the latest technical standards at a cost of around 3 million euros.

Prospective students

Studierende im Informatik Bachelorstudium programmieren mit Laptop Software für ein autonomes Fahrzeug

Computer Science

Bachelor

Ready to go down the rabbit hole? By studying computer science at the University of Siegen, you can specialize early and dive deep into the topics that truly excite you!

Studentinnen auf dem Schloßplatz

Electrical Engineering

Bachelor

The bachelor's degree in electrical engineering emphasizes foundational principles and methods. Over six semesters, you'll gain the essential knowledge and skills to tackle real-world challenges in electrical engineering.

Elektrotechnik Labor an der Universität Siegen – Praxisprojekt im Studiengang Digital Engineering.

Digital Engineering - Electrical Engineering

Bachelor

Study Digital Engineering and overcome the boundaries between engineering and computer science. Choose the specialization that suits you: Mechatronics, Mechanical Engineering or Electrical Engineering.

Mehrere Studieren sitzen auf den Treppenstufen vor der Nikolaikirche

Computer Science (Informatics)

Master

In the Master's degree program in Computer Science, you will study core topics of computer science in depth and learn how to (further) develop and properly apply methods and procedures to solve computer science problems.

Drei Studierende lernend in der Mensa

Electrical engineering

Master

The Master's degree program in Electrical Engineering is research-oriented and deepens the scientific foundations and methods of electrical engineering.

Campus Unteres Schloss

Mechatronics

Master

Mechatronics merges multiple disciplines of engineering research, leading to innovative products and systems with less mechanical complexity but greater abilities.

Student mit Fahrrad

Nanoscience and Nanotechnology

Master

If you would like to study nanoscience and nanotechnology, then the Master's degree course in Nanoscience and Nanotechnology is perfect for you.

 

 

Studierende im Hörsaal

Embedded Intelligence Nanosystems Engineering (EMINENT)

Master

The English-language degree program "Embedded Intelligence Nanosystems Engineering (EMINENT)" is offered jointly by 5 universities: University of Siegen, Hellenic Mediterranean University (HMU, Greece), NOVA Lisbon (Portugal), University of Orléans (France) and Vilnius Gediminas Technical University (Lithuania).

Studierende im neuen Hörsaalzentrum

Computer Science — Dual Study Program

Bachelor

Parallel to their coursework at the university, students are hired to undergo not just training, but real work at a partner company. Graduates can expect that their unique, well-grounded practical and academic perspective will be in high demand.

Hilfskräfte

Electrical Engineering / Dual Study

Bachelor

From day one, you are employed by a partner company, studying at the university during the semester and completing work and training phases at the company during the semester breaks.

Key Areas of Focus in the Department of Electrical Engineering and Computer Science

The Department of Electrical Engineering and Computer Science is committed to providing a forward-looking education in the fields of automation, communications technology, embedded systems, software development, and artificial intelligence. Our focus is on hands-on teaching, interdisciplinary research, and close collaboration with industry. In this way, we specifically prepare our students for the technological challenges of tomorrow.  

Focus on Automation

LS Regelungs und Steuerungstechnik

Control and Regulation Technology

Prof. Dr. Michael Gerke

The Chair of Control and Regulation Technology develops autonomous driving and flying robots. This work combines modern sensor technology, hardware, software, and control and regulation technology. One area of focus is autonomous driving, with research centered on path planning, mapping, and obstacle avoidance.

Zuverlässigkeit Technischer Systeme & Elektrische Messtechnik

Reliability of Technical Systems and Electrical Measurement Technology

Prof. Dr. Frank Gronwald

In the "Reliability of Technical Systems & Electrical Measurement Technology" research group, we provide students with essential knowledge of electrical measurement technology and process measurement technology through lectures and lab sessions. We are also actively involved in other courses covering the fundamentals of electrical engineering. In our research, we focus on the interdisciplinary fields of “Reliability of Technical Systems” and “Electromagnetic Compatibility,” on which we also offer lectures and collaborate with partners in industry and other institutions. Here in Siegen, we have a dedicated laboratory for electromagnetic compatibility testing, as well as simulation software for calculating and analyzing high-frequency electromagnetic fields."

Interconnected Automation Systems

Interconnected Automation Systems

Prof. Dr.-Ing. Oliver Wallscheid

The Interconnected Automation Systems (IAS) Chair conducts research and teaches in the field of distributed systems, with a focus on power electronics, drive technology, and mechatronics. This encompasses both hardware and software aspects related to the modeling, design, integration, and control of such systems at the intersection of engineering and data science methods. In addition to fundamental academic research, the transfer of knowledge to experimental studies and industrial applications is of particular importance.  

Focus on Didactics and Vocational Education and Training

Didaktik der Inforamtik Imagebild

Teaching Methods in Computer Science

Dr. Steffen Jaschke

The research group is responsible for the teacher education programs (HRSGe/GymGe/BK) that include computer science as a teaching subject. Research and teaching focus on the didactic design of computer science education processes in schools and higher education institutions, combining content-related, methodological, and media-related perspectives with practice-oriented testing. Current projects include digital and AI-supported learning environments, AR/VR-supported teaching and learning settings, and feedback systems.

Imagebild Technikdidaktik am Berufskolleg

Teaching Technology at the Vocational High School

Prof. Dr. Ralf Dreher

The “Technology Education” department at the vocational college was established as an endowed chair funded by the Siegerland industrial community to address the significant shortage of instructors for industrial and technical vocational training in the region. The department has implemented a nationwide curriculum for the occupational fields of metal technology, electrical engineering, and technical computer science, which centers on acquiring independent and sustainable knowledge of work processes through instructional development projects in the technology education laboratories, and using this as a foundation to develop instructional units (learning situations).

Similarly, in close collaboration primarily with regional industry, research is conducted on the structures and content of work processes in a work environment characterized by the transformation of industrial work—specifically through the use of Industry 4.0, AI, and additive manufacturing technologies. Research in this context involves the documentation and description of prototypical work processes, the development of necessary measures for teacher professional development, and forms of internal differentiation within vocational education for traditionally very heterogeneous groups of teachers, in cooperation with social welfare organizations and the Employment Agency.

Focus on Embedded Systems

IMage Bild für ET-I

Operating Systems and Distributed Systems

Prof. Dr. Roland Wismüller

The chair focuses on system-oriented programming, distributed systems, and electronic exercise and examination systems. Specifically, we are currently developing a virtual machine for secure collaboration in component-based systems, a system for the easy visualization of algorithms, and learning and tutoring systems for programming education. A particular focus is on automated feedback generation using large language models (LLMs).

Embedded Systems

Embedded Systems

Prof. Dr. Roman Obermaisser

The Chair of Embedded Systems focuses on real-time capabilities, reliability, safety, and adaptivity in distributed embedded systems and at the chip level. In addition to basic research in the areas of system architectures, design methods, and fault tolerance, this also includes applications in medical technology, the automotive industry, avionics, energy systems, and industrial automation. For example, the chair develops scheduling algorithms for the temporal and spatial planning of safety-critical applications, including their computations and communication across the cloud-edge continuum. The components and services developed include software, hardware, and tools, which are experimentally evaluated in simulations and physical systems. A key focus is on techniques for embedded artificial intelligence with reliable AI accelerators for safety-critical applications.

LS Modellbasierte Entwicklung

Model-Based Development

Prof. Dr. Malte Lochau

The Model-Based Engineering (MBE) Group conducts research and teaches in the fields of software engineering and database systems, with a particular focus on techniques and tools for the holistic use of formal models in the software development process. Key areas of focus include configurable software and variant management, ensuring software quality through software testing, and quantum software engineering.

Ubiquitous Computing

Ubiquitous Computing

Prof. Dr. Kristof Van Laerhoven

Our research focuses on a new generation of small, embedded computer systems equipped with basic processing and sensor modules, enabling them to detect, monitor, and respond to phenomena in their environment and learn from them. We are particularly interested in obtaining multiple simple (and therefore more difficult to use) sensor signals in low-power devices, rather than solutions that focus on a few high-quality signals, which are typically more expensive, more complex, and/or more vulnerable.

Imagebild Theoretische Informatik

Theoretical Computer Science

Prof. Dr. Markus Lohrey

The Theoretical Computer Science Research Group focuses on algorithmic and complexity-theoretical problems in automata theory, algebra (particularly group theory), and database theory. A key area of focus is algorithms that operate directly on compressed data without first decompressing it. In particular, we investigate grammar-based compression methods that hierarchically decompose complex objects, identify recurring patterns, and replace them with macros. We are also interested in algorithms that operate on data streams (streaming algorithms).

Imagebild Arbeitsgruppe MIGS

Medical Informatics and Graph-Based Systems

The Medical Informatics and Graph-Based Systems Research Group at the University of Siegen (MIGS) brings together expertise in the fields of knowledge management, artificial intelligence, data and text mining, machine learning, semantic technologies and knowledge graphs, and the use of sensor data and smart measurement systems. Our research focuses on developing new approaches to knowledge modeling using knowledge graphs and applying them to hybrid, explainable recommendation systems that explore knowledge structures and make knowledge usable across systems. In doing so, we support the fields of medicine, education, and industrial manufacturing and maintenance.

Specialization in Sensorics and Communication

IMage Bild für ET-I

Analog Circuit Design and Imaging Sensor Systems

Prof. Dr. Bhaskar Choubey

The chair focuses on the development and research of analog and integrated circuits, particularly for image processing systems, CMOS image sensors, and microelectromechanical systems. Current research also focuses on the hardware implementation of artificial intelligence—for example, using memristors—with applications in the financial and business sectors.

Chair for Computational Sensorics

Computational Sensorics

Prof. Dr. Ivo Ihrke

The Chair of Computational Sensing / Communications Engineering focuses on the research field of “computational imaging”—the development and implementation of imaging systems in which algorithmic processing plays a central role.

The focus is on a holistic approach: from experimental planning and modeling through numerical methods to practical implementation, data acquisition, algorithm development, and evaluation. By considering the entire imaging chain, the goal is to fully exploit the optimization potential of such systems.

Forschung Höchstfrequenztechnik und Quantenelektronik

High-Frequency Technology and Quantum Electronics

Prof. Dr. Peter Haring-Bolivar and Prof. Dr. Bernd Buxbaum

The focus of teaching and research is on the development and analysis of photonic and quantum electronic components for ultra-high-frequency applications, particularly in security-related and information technology systems, as well as in bioscience applications.

Imagebild Theoretische Elektrotechnik und Photonik

Theoretical Electrical Engineering and Photonics

Prof. Dr. Elmar Griese & Dr. Thomas Kühler

The Chair of Theoretical Electrical Engineering and Photonics conducts research on short-range optical connections for electrical environments. The focus is on the design and development of processing techniques for optical waveguides in thin glass via diffusion—that is, ion-exchange technologies—for integration into printed circuit boards. In particular, the research focuses on optical directional couplers for bidirectional connections. Optical waveguides provide significantly higher data rates than can be achieved with electrical connections. The department also serves as a point of contact for solving electrodynamic field problems using tailored numerical methods for practical applications. In teaching, the areas of “Fundamentals of Electrical Engineering,” “Fundamentals of Signal and System Theory,” “Numerical Methods,” “Electromagnetic Field Theory,” and “Optical and Electrical Signal Transmission” are covered in both German and English.

Imagebild

Communications Technology

Prof. Dr. Jasmin Grosinger

The Chair of Communications Engineering develops sustainable and energy-efficient wireless communication and sensor systems. The focus is on resource-efficient technologies for the Internet of Things (IoT) and industrial digitalization.
Key research areas include backscatter communication, near-field communication (NFC), wireless power transfer, and RF energy harvesting.

IMage Bild für ET-I

Digital Integrated Systems

Prof. Dr. Bing Li

 

Focus on Visual Computing

SPH

Computer Graphics and Multimedia Systems

Prof. Dr. Andreas Kolb and Prof. Dr. Dirk Hecker

The Chair of Computer Graphics and Multimedia Systems deals with all aspects of image synthesis, ranging from the creation of 3D models of complex objects and scenes (modeling), the creation of geometric objects from real-world situations or abstract data sets (visualization), the simulation of visual natural phenomena and physically based lighting calculations, all the way to efficient methods of image generation (rendering).

Gruppe in Boxen

Computer Vision

Prof. Dr. Michael Möller

The Computer Vision group conducts research in the fields of mathematical image processing, computer vision, and machine learning, with a particular focus on the combination of machine learning and energy minimization methods. In this context, we are interested in efficient optimization techniques, convex relaxations, inverse problems, and provable properties of deep neural networks in the aforementioned areas.

Intelligente Systeme

Intelligent Systems

Prof. Dr. Jöran Beel & Prof. Dr. André Klahold

The Intelligent Systems Group (ISG) conducts research in the areas of recommendation systems (RecSys), personalization, and information retrieval (IR), as well as in the areas of automated machine learning (AutoML), meta-learning, and algorithm selection. Areas of particular interest to us include smart places, eHealth, manufacturing (Industry 4.0), mobility, visual computing, and digital libraries.

Imagebild Medieninformatik

Media and Computer Science

Prof. Dr. Volker Blanz

The Chair of Media Informatics focuses on various aspects of machine and human vision, including image segmentation, face recognition, and the three-dimensional reconstruction of faces from single images. A key focus of current research is on biologically inspired models and architectures.

Visual Computing

Visual Computing

Assistant Professor Dr. Jovita Lukasik

The Visual Computing Group focuses on computer vision and machine learning. One of our main areas of research is the automatic development of neural networks. Our goal is to determine how such networks can become more efficient while remaining robust against image artifacts. We are also exploring new approaches to better understand how neural networks make decisions—and how these decisions can be brought closer to human decision-making.

Department Spokesperson

Personal profile photo

Univ.-Prof. Dr. Malte Lochau

Professor*
Profilbild Oliver Wallscheid

Prof. Dr.-Ing. Oliver Wallscheid

Chairholder

Department Secretariat

Christiane Rhode

ETI Department Secretary

Contact

department@eti.uni-siegen.de
0271/ 740-4428
H-A 4104/2
Hölderlinstraße 3

Opening hours

Monday:
8:30-11:30
Tuesday:
11:00-13:00
Wednesday:
11:00-13:00
Thursday:
8:30-11:30

Address and Directions

Logo Fakultät IV: Naturwissenschaftlich-Technische Fakultät

Adresse

University of Siegen 
Department of Electrical Engineering and Computer Science 
Hölderlinstraße 3 
57076 Siegen