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This work presents the design and investigation of a novel UV-lamp-system, which is based upon UV-induction lamps and a MHz-inverter equipped with normally-on junction field effect transistors (JFET). A system efficiency of some more than 27 % is verified with the prototype UV-induction lamp system, which positions between the two previous UV-systems and open up new fields of application.
MHz-Wechselrichter --- Siliziumkarbid --- UV-disinfection --- resonant inverter --- UV-Induktionslampe --- UV-induction lamp --- Resonanzwechselrichter --- silicon carbide --- UV-DesinfektionMHz inverter
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The topic of this publication is the design of two new set-based methods for the determination of the states of linear parameter-varying systems. These sets are computed by interval observers based on unknown but bounded inputs, outputs and parameters. The effectiveness of the methods is demonstrated by the state estimation of an induction motor that is achieved by combining the interval observers with a novel model of a voltage source inverter.
Intervallbeobachter --- Zustandsschätzung --- Asynchronmaschine --- induction motor --- voltage source inverter --- interval observer --- state estimation --- linear parameter-varying systems --- Lineare parametervariante Systeme --- Wechselrichter
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