학술논문

Current Sharing Analysis of Three-Phase Interleaved LLC and Optimization Method to Reduce the Influence of Stray Inductance
Document Type
Periodical
Source
IEEE Transactions on Power Electronics IEEE Trans. Power Electron. Power Electronics, IEEE Transactions on. 39(3):3422-3437 Mar, 2024
Subject
Power, Energy and Industry Applications
Aerospace
Communication, Networking and Broadcast Technologies
Components, Circuits, Devices and Systems
Computing and Processing
Engineered Materials, Dielectrics and Plasmas
Fields, Waves and Electromagnetics
General Topics for Engineers
Nuclear Engineering
Signal Processing and Analysis
Transportation
Inductance
Topology
Voltage
Integrated circuit modeling
Capacitors
Optimization methods
Transformers
Current imbalance
current sharing optimization
stray inductance
++%24LLC%24<%2Ftex-math>+<%2Finline-formula>+<%2Fnamed-content>%22">three-phase interleaved $LLC$
Language
ISSN
0885-8993
1941-0107
Abstract
Three-phase interleaved LLC is widely used because it can increase power capacity and reduce output current ripple. However, this article found that the three-phase interleaved LLC with all the resonant components using the delta connection (full-Δ type) has poor current-sharing characteristics. This article establishes the current sharing analysis model of three-phase interleaved LLC , explains the reasons for its poor current sharing effect, and proposes that changing the resonant capacitor to Y-type (Δ-Cr-Y type) can improve the current sharing effect. Further, to reduce the influence of stray inductance asymmetry on the current sharing, taking the Δ-Cr-Y type as an example, this article deduces the equivalent circuit model including stray inductance and proposes a current sharing optimization method without additional components. The proposed method can obtain the stray inductance of the three-phase resonant tank. Based on the stray inductance, the resonant inductance can be adjusted to obtain a better current-sharing effect. Finally, the proposed model and optimization method are verified by simulation and experiments. Compared with the full-Δ type, the proposed Δ-Cr-Y type shows higher current balance performance, and the proposed optimization method can further reduce the line current unbalance factor by more than 85%, and the phase current unbalance factor by more than 60%.