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    <title>Physics-based discrete modelling and digital control design for grid-side inverters for renewable energy</title>
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    <namePart>Eckel, Hans-Günter</namePart>
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  <abstract type="Summary">This work lays out the methodology of the analysis and consequent control design for the LC filter application on the example of a 5 MW wind turbine. The chapters progress sequentially through the different complexity steps from the continuous analysis to the discrete-space modeling to control algorithm design, integrated into a microcontroller-based hardware setup. The methods in each complexity step illustrate the process, starting with the identification of the control issue, through the control solutions, and ending with the evaluation using dynamic analysis.&lt;eng&gt;</abstract>
  <abstract type="Summary">Diese Arbeit legt die Methodik der Analyse und des anschließenden Regelungsentwurfs für die LC-Filteranwendung am Beispiel einer 5-MW-Windturbine dar. Die Kapitel führen durch die verschiedenen Komplexitätsstufen von der kontinuierlichen Analyse über die Modellierung im diskreten Raum bis hin zum Entwurf des Regelalgorithmus, der in eine mikrocontrollerbasierte Hardware integriert ist. Die Methoden jedes Komplexitätsschritts veranschaulichen den Prozess, beginnend mit der Identifizierung des Regelungsproblems, über die Regelungslösungen und endend mit der Bewertung mittels dynamischer Analyse.&lt;ger&gt;</abstract>
  <note type="statement of responsibility">vorgelegt von Michael Schütt</note>
  <note>GutachterInnen: Hans-Günter Eckel (University of Rostock, Institute of Electrical Power Engineering) ; Sibylle Dieckerhoff (Technical University of Berlin, Institute of Energy and Automation Technology)</note>
  <note type="thesis">Dissertation Universität Rostock 2022</note>
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      <title>Physics-based discrete modelling and digital control design for grid-side inverters for renewable energy</title>
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      <namePart>Schütt, Michael, 1988 - </namePart>
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