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Toomas Vaimann (toomas dot vaimann at ttu dot ee ).
Most of these endpoints are distributed on the load side of power systems, in contrast to traditional control resources such as centralized bulk generators.
This thesis focuses on controlling power systems in real time, using these load side resources. (1) Distributed load-side frequency control: We establish a mathematical framework to design distributed frequency control algorithms for flexible electric loads.
We will provide the necessary software for the numerical analysis of the machine but the candidate will be responsible for developing and implementing the optimization procedure.
Control Electrical Machine Thesis
At the end of the thesis, a prototype machine will be built and the candidate can participate in this process too.
Achieving this objective for the novel permanent magnet assisted reluctance machine could help to improve existing control strategies.
∙ Design control algorithms, vision, or plant model in MATLAB/SIMULINK ∙ Build a real-time application from MATLAB/SIMULINK to the target machine ∙ Set-up and tune signal parameters from within MATLAB/SIMULINK during real-time execution The test bench, combining advantages of real-time software models and real equipment, contributes to the reduction of the number of test runs and safe maintenance.
Test benches cover many different areas like energy management, optimal configuration, combination of different energy sources, etc.
Research goals will be achieved by proper verification of the model.