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One of the central requirements of a Dual Active Bridge (DAB) converter is to operate under Zero Voltage Switching (ZVS) conditions, to reduce switching losses and increase operating efficiency. This paper shows how frequency domain analysis can be used to design and operate a DAB to ensure ZVS across the entire operating range by using transformers with a reduced winding coupling factor and adaptive...
For energy conversion systems that require bidirectional energy transfer between two DC sources, the generally preferred converter topology is a Dual Active Bridge (DAB), particularly when galvanic source isolation is required. However, for maximum efficiency the two bridges should operate under Zero-Voltage-Switching (ZVS) conditions, and hence it is important to be able to accurately identify this...
Many voltage source converters have no redundant power components (e.g. IGBT modules) built in. Therefore if one power component fails, the converter stops working. Here we introduce a generic approach that takes advantage of the inherent redundancies of voltage vectors in multilevel converters in order to actively extend the lifetime of converters. When detecting increased stress of one IGBT module,...
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