摘要
Multi active bridge (MAB) converters have been increasingly used due to high-power density and flexible power sharing. However, the power cross-coupling effect among different MAB ports poses a great challenge for energy control. Traditional proportional–integral controllers used for voltage control and power sharing in MAB converters exhibit relatively slow dynamic responses and significant overshoot. To address this problem, a multicost function finite control set–model predictive control (FCS-MPC) strategy is proposed, which eliminates the need for power decoupling. This control strategy can achieve excellent transient performance and precise power sharing performance. This article develops FCS-MPC and implements the proposed method through a triple active bridge converter example. The operating principle involves predicting dc voltage and current through an FCS of phase-shift ratios, where voltage and power converge iteratively using dual cost functions under single-phase shift modulation. The feasibility of the proposed method is validated by simulation and experimental results.
| 源语言 | 英语 |
|---|---|
| 页(从-至) | 16110-16120 |
| 页数 | 11 |
| 期刊 | IEEE Transactions on Aerospace and Electronic Systems |
| 卷 | 61 |
| 期 | 6 |
| DOI | |
| 出版状态 | 已出版 - 2025 |
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