2020 · 23 citations · 16 references
Electrical EngineeringFrequency Modulation ControlEngineeringPower DeviceEfficient High-power ApplicationsPower Semiconductor DevicePower Electronics ConverterUnfolding BridgeElectric Power ConversionSingle-stage Sr-dahb InverterPower Electronic SystemsPower InverterPower Electronics
This paper presents a single-stage series-resonant dual active half bridge (SR-DAHB) inverter suitable for high power applications. The topology is an isolated dual half-bridge circuit with an unfolding bridge. A combined phase-shift and frequency modulation technique is utilized to generate AC power output. In high-power applications where the switching devices operate at relatively high current and voltage, the switching loss becomes the major portion of the converter's total loss as the devices are turned on and off under hard switching condition. The primary merit of the proposed single-stage SR-DAHB inverter with the combined phase-shift and frequency modulation control is to significantly reduce the switching loss so that it is not a function of load current. A precise and comprehensive power loss model is developed for both the SR-DAHB and DAHB to optimize the operation of the inverters. The objective of the optimization is to minimize the inverter total loss while calculating the optimum combination of frequency and phase shift. A 1.5 kV, 50 kW prototype was built to demonstrate the performance of the SRDAHB versus DAHB inverters with the combined phase-shift and frequency modulation control, and validate the theoretical analysis.
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Nathan Weise, Gysler Castelino, Kaushik Basu et al. · IEEE Transactions on Power Electronics · 2014 · 209 citations