4.8 Article

Variable-Switching-Frequency Single-Stage Bidirectional GaN AC-DC Converter for the Grid-Tied Battery Energy Storage System

期刊

IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS
卷 69, 期 11, 页码 10776-10786

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TIE.2021.3120483

关键词

Batteries; Zero voltage switching; Transistors; Inductors; Bridge circuits; Switching frequency; Silicon; AC-DC converter; battery energy storage system (BESS); dual phase shift (DPS); dual-active-bridge (DAB); gallium-nitride (GaN); online calculation; optimal control; power-factor-correction (PFC); variable frequency (VF); zero-voltage-switching (ZVS)

资金

  1. United States Department of Energy's Energy Storage Program

向作者/读者索取更多资源

This article presents a novel GaN-based three-phase grid to 48-V battery energy storage system. The system utilizes a single-stage ac-dc dual-active-bridge converter with dual-phase-shift and variable-frequency control. The effectiveness of this control method is validated through experimental results.
This article presents a 10-kW novel gallium-nitride (GaN)-based three-phase grid to 48-V battery energy storage system (BESS). The BESS utilizes a single-stage ac-dc dual-active-bridge (DAB) converter with dual-phase-shift (DPS) and variable-frequency (VF) control. 600- and 80-V GaN power transistors, as well as planar magnetics, are used to achieve 96.6% efficiency and 50-W/in(3) power density. The operation principle and power transfer characteristics are derived based on time-domain analysis of the DAB inductor current. VF and DPS are utilized to achieve power factor correction and zero-voltage switching simultaneously while minimizing the DAB rms current. An online calculation algorithm is presented with short execution time, which enables the closed-loop control of the BESS. Experimental results are presented to validate the novel control.

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