TY - JOUR
T1 - Phase Current Balancing Control With Single Bus Current Sensor in Three-Phase Dual-Active-Bridge DC–DC Converters
AU - Yan, Hao
AU - Han, Hao
AU - Wang, Xu
AU - Hu, Kejia
AU - Li, Weilin
N1 - Publisher Copyright:
© 2015 IEEE.
PY - 2026/2
Y1 - 2026/2
N2 - Three-phase dual-active-bridge (3p-DAB) dc–dc converters find widespread application in high-power conversion systems due to their high power density, operational efficiency, and inherent galvanic isolation. However, parameter imbalances in the three-phase transformer of a 3p-DAB can lead to unbalanced phase currents, which may result in unbalanced thermal or current stress on the power devices and reduce the lifetime of both the devices and the transformer, thereby decreasing the reliability of the system. This article analyzes the unbalanced phase current behavior in 3p-DAB converters and proposes a phase current balancing control method using a single bus current sensor. Compared with multisensor control methods, the proposed approach is more cost-effective and enables a more compact converter design. The control strategy reconstructs the phase current trajectories in the αβ frame based on bus current information, then estimates the root-mean-square (rms) values of each phase current to provide feedback for the closed-loop balance control system. The feasibility of the proposed method is verified through simulations and an experimental platform based on a TI TMS320F28379D microcontroller.
AB - Three-phase dual-active-bridge (3p-DAB) dc–dc converters find widespread application in high-power conversion systems due to their high power density, operational efficiency, and inherent galvanic isolation. However, parameter imbalances in the three-phase transformer of a 3p-DAB can lead to unbalanced phase currents, which may result in unbalanced thermal or current stress on the power devices and reduce the lifetime of both the devices and the transformer, thereby decreasing the reliability of the system. This article analyzes the unbalanced phase current behavior in 3p-DAB converters and proposes a phase current balancing control method using a single bus current sensor. Compared with multisensor control methods, the proposed approach is more cost-effective and enables a more compact converter design. The control strategy reconstructs the phase current trajectories in the αβ frame based on bus current information, then estimates the root-mean-square (rms) values of each phase current to provide feedback for the closed-loop balance control system. The feasibility of the proposed method is verified through simulations and an experimental platform based on a TI TMS320F28379D microcontroller.
KW - Balance control
KW - three-phase dual-active bridge (3p-DAB)
KW - unbalanced phase current
UR - https://www.scopus.com/pages/publications/105019545385
U2 - 10.1109/TTE.2025.3620591
DO - 10.1109/TTE.2025.3620591
M3 - 文章
AN - SCOPUS:105019545385
SN - 2332-7782
VL - 12
SP - 674
EP - 685
JO - IEEE Transactions on Transportation Electrification
JF - IEEE Transactions on Transportation Electrification
IS - 1
ER -