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Non-inverting Buck Boost converters (NIBB) have been utilized as interfacing converters for energy storage, due to the high steady-state efficiency offered by the asynchronous control. However, classical asynchronous control has inherent poor dynamic performance when the input and output voltages are near. To solve the problem, concept of “dynamic mode switching” is first proposed in this paper. Instead...
In dealing with the wide voltage range of renewable energy and energy storage device, non-inverting Buck-Boost converter (NIBB) have been utilized for DC-DC power conversion. This converter shows efficient steady-state performance under asynchronous control, but the dynamic performance is poor when input and output voltage are near. In this paper, the concept of unified mode control for NIBB is proposed...
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