A Fast Low-Computation Sequential Model Prediction Control Strategy for Mid-Point Voltage Balance of Three-Phase ANPC Inverter
编号:109 访问权限:仅限参会人 更新:2025-05-06 15:14:05 浏览:10次 口头报告

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摘要
To alleviate the imbalance and fluctuation issues when adopting traditional finite control set model prediction (FCS-MPC), a fast low-computation sequential model prediction control (S-MPC) for optimizing midpoint voltage balance is proposed. The method establishes the mathematical models of system output current and midpoint voltage separately and performs the optimization prediction of the cost functions constructed by the two models according to a certain priority. The S-MPC method is effective in controlling the midpoint voltage of the DC bus. Meanwhile, compared with the traditional model predictive control based on midpoint voltage balance (M-MPC), the S-MPC shows better results under the condition of unbalanced DC bus capacitance. Under the capacitance imbalance condition, the THD of the output current of S-MPC is reduced by 7.54% compared to that of FCS-MPC, while S-MPC is reduced by 1.96% compared to the conventional M-MPC.
关键词
Model Prediction Control,ANPC,Mid-Point Voltage Balance
报告人
Zichen Liu
Graduate Northwestern Polytechnical University

稿件作者
Zhihong Ji Northwestern Polytechnical University
Zichen Liu Northwestern Polytechnical University
Gerui Zhang Northwestern Polytechnical University
Yiming Xu Northwestern Polytechnical University
Weilin Li Northwestern Polytechnical University
Wenjie Liu Northwestern Polytechnical University
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重要日期
  • 会议日期

    06月05日

    2025

    06月08日

    2025

  • 04月30日 2025

    初稿截稿日期

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IEEE PELS
IEEE
承办单位
Southeast University
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