Department of Engineering and Communication
Master's thesis: Calorimeter
General information about the project
Project title: Design of a control concept for a dual-chamber calorimetric test rig to measure the conduction losses of magnetic components
Supervisors: Prof. Dr Marco Jung, Oliver Frahnert
Email: marco.jung@h-brs.de, oliver.frahnert@h-brs.de
Number of places: 1
Start: immediately
Degree programmes: Electrical Engineering / Sustainability in Engineering
Aim of the thesis:
As part of this master's thesis, a model predictive control (MPC) system is being developed for a dual-chamber calorimetric measurement system to precisely determine the power dissipation of magnetic components. The measurement principle is based on the calorimetric evaluation of thermal state variables within a strongly coupled multi-compartment thermal model.
The aim of this thesis is to control:
- the internal temperature of the test specimen,
- the temperature in the gap of the measurement structure, and
- the model-based temperature of a virtual heat sink.
In doing so, dynamic couplings, dead times and thermal side paths are to be modelled using a suitable equivalent thermal model (e.g. an RC network) and utilised for predictive control. The controller must satisfy both temperature- and power-related constraints and be suitable for use in a real-world measurement setup.
Task packages:
- Familiarisation with the existing literature (calorimetry, thermodynamics and control engineering)
- Familiarisation with the existing test bench
- Creation of a simulation environment in the form of a state-space model
- Identification of a suitable control method (e.g. LMPC)
- Implementation and integration of the control system on the target hardware
- Evaluation and tuning of the control parameters
Requirements / Skills:
Control engineering:
- Understanding of systems theory (LTI systems, state-space representation)
- Basic knowledge of numerical optimisation would be an advantage
- A basic understanding of state estimation would be desirable
- Experience with Matlab/Simulink
Thermodynamics (basic knowledge):
- Fundamentals of heat balance and heat fluxes
- Understanding of heat transfer and thermal transition processes
- Knowledge of water cooling circuits in technical systems
Electrical engineering:
- Experience with the assembly and processing of printed circuit boards
- Knowledge of soldering (THT and, ideally, SMD)
- Crimping and wiring of electrical components
- Assembly of simple electrical circuits and their commissioning
What we offer:
- The opportunity to work in a motivated and interdisciplinary team
- Practical insights into current research topics in power electronics and energy technology
- Flexible working hours by arrangement
- Opportunities for professional development and deepening of practical skills
Interested?
Then we look forward to receiving your application, including a brief CV and a transcript of marks, at:
Prof. Dr Marco Jung – marco.jung@h-brs.de or Oliver Frahnert - oliver.frahnert@h-brs.de
Contact
Marco Jung
Professorship for Electromobility and Electrical Infrastructure with a focus on Power Electronics
Research fields
Location
Sankt Augustin
Room
B213
Address
Grantham-Allee 20
53757 Sankt Augustin
Telephone
+ 49 2241 865 316Location
Sankt Augustin
Room
B213
Address
Grantham-Allee 20
53757 Sankt Augustin
Telephone
+ 49 2241 865 316
Location
Sankt Augustin
Room
B047
Address
Grantham-Allee 20
53757 Sankt Augustin
Contact hours
Tue,Wed,Thu,Fri: 9:00 am to 4:00 pm
Telephone
+49 2241 865 9785