VLDB 2026 Research / reviewers in the wild / expert
Michael Bragard
dblp:295/4486
· DBLP profile ↗
6ranked-venue papers
0as first author
6since 2021 · last 2025
0000-0001-8822-8517ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Human-computer interaction and ubiquitous computing · 6 · 6 since 2021Applied, interdisciplinary, general and emerging computing · 6 · 6 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Overcoming the Duality and Rivalry of Teaching: The Integrative Electrical Engineering Degree Program with Vocational Training OrientationabstractThis paper presents the development and implementation of an integrative electrical engineering degree programme with vocational training orientation (180 or 210 ECTS credits, 6 or 7 semesters) in the field of electrical engineering. It is based on overcoming the traditional duality in the German educational and academic system by making the two career paths more permeable. Within the first semester, ETAUS students work full-time at the training company. During the lecture period, they attend regular courses at the faculty of electrical engineering at FH Aachen and continue to work at the company one day a week. At the end of the semester, a final mentoring discussion takes place so that the students can make an informed decision about their future educational path. Pia Kramer, Michael Bragard, Felix Hüning |
EDUCON | 2 |
| 2025 | A Retrospective Comparison and Experiences of Different Situationally Adapted Forms of Teaching Control EngineeringabstractThe coronavirus pandemic is now several years in the past. This paper takes this as an impulse to analyse the effects of the pandemic on studying success in the context of a course on control engineering. To this aim, the contents of the module are first described and the adjustments in the implementation of the module that were triggered by the pandemic are described. The question of the impact of the pandemic on studying success is then analysed and interpreted using examination data and student surveys from 2019 to 2023. René Rütters, Sarah Dolls, Michael Bragard |
EDUCON | 3 |
| 2024 | Low-Voltage DC Training Lab for Electric Drives - Optimizing the Balancing Act Between High Student Throughput and Individual Learning SpeedabstractAfter a brief introduction of conventional laboratory structures, this work focuses on an innovative and universal approach for a setup of a training laboratory for electric machines and drive systems. The novel approach employs a central 48 V DC bus, which forms the backbone of the structure. Several sets of DC machine, asynchronous machine and synchronous machine are connected to this bus. The advantages of the novel system structure are manifold, both from a didactic and a technical point of view: Student groups can work on their own performance level in a highly parallelized and at the same time individualized way. Additional training setups (similar or different) can easily be added. Only the total power dissipation has to be provided, i.e. the DC bus balances the power flow between the student groups. Comparative results of course evaluations of several cohorts of students are shown. Tim Becker, Michael Bragard |
EDUCON | 2 |
| 2024 | Visualizing, Enhancing and Predicting Students' Success through ECTS MonitoringabstractThis paper serves as an introduction to the ECTS monitoring system and its potential applications in higher education. It also emphasizes the potential for ECTS monitoring to become a proactive system, supporting students by predicting academic success and identifying groups of potential dropouts for tailored support services. The use of the nearest neighbor analysis is suggested for improving data analysis and prediction accuracy. Pia Kramer, Michael Bragard, Thomas Ritz, Ute Ferfer, Tim Schiffers |
EDUCON | 2 |
| 2024 | The Inverted Rotary Pendulum: Facilitating Practical Teaching in Advanced Control EngineeringabstractThis paper outlines a practical approach to teach control engineering principles, with an inverted rotary pendulum, serving as an illustrative example. It shows how the pendulum is embedded in an advanced course of control engineering. This approach is incorporated into a flipped-classroom concept, as well as classical teaching concepts, offering students practical experience in control engineering. In addition, the design of the pendulum is shown, using a Raspberry Pi as the target platform for Matlab Simulink. This pendulum can be used in the classroom to evaluate the controller design mentioned above. It is analysed if the use of the pendulum generates a deeper understanding of the learning contents. René Rütters, Michael Bragard, Sarah Dolls |
EDUCON | 2 |
| 2021 | Problem-Based Learning in Automation Engineering: Performing a Remote Laboratory Session Serving Various Educational AttainmentsabstractDuring the Covid-19 pandemic, vocational colleges, universities of applied science and technical universities often had to cancel laboratory sessions requiring students' attendance. These above of all are of decisive importance in order to give learners an understanding of theory through practical work.This paper is a contribution to the implementation of distance learning for laboratory work applicable for several upper secondary educational facilities. Its aim is to provide a paradigm for hybrid teaching to analyze and control a non-linear system depicted by a tank model. For this reason, we redesign a full series of laboratory sessions on the basis of various challenges. Thus, it is suitable to serve different reference levels of the European Qualifications Framework (EQF).We present problem-based learning through online platforms to compensate the lack of a laboratory learning environment. With a task deduced from their future profession, we give students the opportunity to develop own solutions in self-defined time intervals. A requirements specification provides the framework conditions in terms of time and content for students having to deal with the challenges of the project in a self-organized manner with regard to inhomogeneous previous knowledge. If the concept of Complete Action is introduced in classes before, they will automatically apply it while executing the project.The goal is to combine students' scientific understanding with a procedural knowledge. We suggest a series of remote laboratory sessions that combine a problem formulation from the subject area of Measurement, Control and Automation Technology with a project assignment that is common in industry by providing extracts from a requirements specification. Anne von Hoegen, Rik W. De Doncker, Michael Bragard, Svenja von Hoegen |
EDUCON | 3 |